Acute Lymphoblastic Leukemia, Non-Hodgkin's Lymphoma
Conditions
Keywords
Moxetumomab pasudotox
Brief summary
A dose-escalation study to estimate maximum cummulative dose (MTCD) of CAT-8015 that can be safely administered to a participant.
Detailed description
A Phase 1, Multicenter, Dose Escalation Study of CAT-8015 in Children, Adolescents and Young Adults with Refractory CD22+ Acute Lymphoblastic Leukemia (ALL) or Non-Hodgkin Lymphoma (NHL) to estimate the maximum tolerated cummulative dose (MTCD), defined as the highest dose and number of doses that can be safely administered to a participant, and to establish a safe dose, based on the MTCD, for subsequent clinical testing.
Interventions
Participants received intravenous infusion of 5 mcg/kg moxetumomab pasudotox (CAT-8015) without concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle.
Sponsors
Study design
Eligibility
Inclusion criteria
\- Histologically confirmed diagnosis of acute lymphoblastic leukemia (ALL) or non-Hodgkin's lymphoma (NHL) including lymphoblastic lymphoma, Burkitt's lymphoma, and large cell lymphoma; - Measurable or evaluable disease. - Evidence of CD22-positive malignancy by one of the following criteria: - greater than or equal to (\>=) 30 % of malignant cells from a disease site cluster of differentiation 22+ (CD22+) by fluorescence-activated cell sorter (FACS) analysis or; ≥ 15 % of malignant cells from a disease site CD22+ by immunohistochemistry (IHC). Stage of disease: - Participants must have relapsed or refractory disease and have received at least one standard chemotherapy and one salvage regimen or allogeneic stem cell transplant; - Relapse after prior autologous or allogeneic HSCT is allowed. In the event of relapse after prior allogeneic HSCT, the participant must be at least 100 days post-transplant and have no evidence of ongoing active graft-vs-host disease; - Recovered from the acute toxic effects of all prior therapy before entry. Performance status: - Participants greater than or equal to (\>=) 12 years of age: Eastern Cooperative Oncology Group (ECOG) score of 0, 1, 2, or 3; - Participants \< 12 years of age: Lansky scale \>= 50%; - Participants who are unable to walk because of paralysis, but who are up in a wheel chair will be considered ambulatory for the purpose of calculating the performance score. Participants with the following central nervous system (CNS) status, are eligible only in the absence of neurologic symptoms suggestive of CNS leukemia, such as cranial nerve palsy. - Female and male participants with childbearing potential and their sexual partners must agree to use an approved method of contraception during the study.
Exclusion criteria
\- Participants meeting any of the following criteria are not eligible for participation in the study: - Isolated testicular or CNS ALL; Hepatic function: - Inadequate liver function defined as total bilirubin \> 2 × upper limit of normal (ULN) (except in the case of participants with documented Gilbert's disease \> 5 × ULN) or transaminases (ALT and aspartate aminotransferase \[AST\]) \> 5 × ULN based on age- and laboratory-specific normal ranges; Renal function: - With greater than age-adjusted normal serum creatinine (see Table below) and a creatinine clearance \> 60 millilitre per minute mL/min/1.73 m2. - Age(Years)- Maximum Serum Creatinine (mg/dl)\[≤5,0.8\] \[5 \< age less than or equal to 10,1.0\] \[10 \< age less than or equal to 15,1.2 \[\> 15, 1.5\] Hematologic function: - For non-leukemic subjects only, absolute neutrophil count (ANC) \< 1000/cmm, or platelet count \< 50,000/cmm, if these cytopenias are not judged by the investigator to be due to underlying disease (ie potentially reversible with anti-neoplastic therapy); - Participants with CNS 3 disease; - Hyperleukocytosis (≥ 50,000 blasts/µL) or rapidly progressive disease (PD) that in the estimation of the investigator and sponsor would compromise ability to complete study therapy; - Prior treatment with CAT-3888 (BL22) or any pseudomonas-exotoxin-containing compound; - HIV positive serology (due to increased risk of severe infection and unknown interaction of CAT-8015 with antiretroviral drugs); - Active hepatitis B or C infection.
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox | Cycles 1, 2 and every 4th cycle: pre-dose, end of infusion (EOI), 1, 1.5, 2.5, 4 and 8 hours post-dose of Dose 1; pre-dose and end of infusion after Dose 6 | Plasma decay half-life is the time measured for the plasma concentration to decrease by one half. |
| Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox | Cycles 1, 2 and every 4th cycle: pre-dose, end of infusion (EOI), 1, 1.5, 2.5, 4 and 8 hours post-dose of Dose 1; pre-dose and end of infusion after Dose 6 | The Cmax is the maximum observed plasma concentration of Moxetumomab Pasudotox. |
| Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox | Cycles 1, 2 and every 4th cycle: pre-dose, end of infusion (EOI), 1, 1.5, 2.5, 4 and 8 hours post-dose of Dose 1; pre-dose and end of infusion after Dose 6 | The AUC (0 to infinity) is the area under the plasma concentration-time curve from time zero to infinity hours. |
| Systemic Clearance (CL) for Moxetumomab Pasudotox | Cycles 1, 2 and every 4th cycle: pre-dose, end of infusion (EOI), 1, 1.5, 2.5, 4 and 8 hours post-dose of Dose 1; pre-dose and end of infusion after Dose 6 | The CL is a quantitative measure of the rate at which a drug substance is removed from the body. The total systemic clearance after intravenous dose was estimated by dividing the total administered dose by the plasma area under the plasma concentration-time curve from time zone to infinite time (AUC\[0-infinity\]). |
| Number of Participants With Dose Limiting Toxicities (DLTs) | Day 1 up to 21 days of Cycle 1 (each cycle duration was of 21 days) | Adverse events that were suspected of a relationship to moxetumomab pasudotox and were greater than or equal to (\>=) Grade 3 in severity were considered DLTs with the following additional criteria or exceptions: Participants with hematologic abnormalities of any grade, Grade 2 allergic reactions of bronchospasm or urticaria, or any Grade ≥ 3 allergic reaction, in the presence of premedication. |
| Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | From start of study drug administration until 30 days after the last dose of study drug | An adverse event (AE) was any untoward medical occurrence attributed to study drug in a participant who received investigational product. A serious adverse event (SAE) was an AE resulting in any of the following outcomes or deemed significant for any other reason: death; initial or prolonged inpatient hospitalization; life-threatening experience (immediate risk of dying); persistent or significant disability/incapacity; congenital anomaly. Treatment-emergent were events between administration of investigational product and 30 days after the last dose of study drug that were absent before treatment or that worsened relative to pre-treatment state. |
| Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | From start of study drug administration until 30 days after the last dose of study drug | Vital signs included parameters as heart rate, blood pressure, temperature, weight, pulse oximetry and respiratory rate. TEAEs were events present at baseline that worsened in intensity after administration of study drug or events absent at baseline that emerged after administration of study drug, for the period extending to 30 days after the last dose of study drug. |
| Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | From start of study drug administration up to 30 days after the last dose of study drug | An abnormal laboratory finding which required an action or intervention by the investigator, or a finding judged by the investigator to represent a change beyond the range of normal physiologic fluctuation were reported as an adverse event. Treatment-emergent were events between first dose of study drug and 30 days after the last dose that were absent before treatment or that worsened relative to pretreatment state. Number of participants with grade 3 or higher treatment-emergent adverse events (5% cut off) for laboratory abnormalities were reported as clinically relevant laboratory changes. |
| Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | From start of study drug administration up to 30 days after the last dose of study drug | An abnormal chemistry finding which required an action or intervention by the investigator, or a finding judged by the investigator to represent a change beyond the range of normal physiologic fluctuation were reported as an adverse event. Treatment-emergent were events between first dose of study drug and 30 days after the last dose that were absent before treatment or that worsened relative to pretreatment state. |
| Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | Baseline and end of treatment (up to 1 year after the last participants begins study drug treatment) | Ophthalmologic examination included evaluation of retinal, corneal and lens abnormalities at baseline and end of treatment that were not present at screening. Participants who experienced abnormalitities during ophthalmologic examination recorded and reported. |
| Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment) | Number of participants with abnormal ECG changes (compared with baseline) as assessed by study cardiologist |
| Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Baseline and end of treatment (up to 1 year after the last participants begins study drug treatment) | The 12-lead ECG data were summarized and evaluated for the following parameters: ,QT, QTC intervals and ventricular rate. Change from baseline in these parameters were reported. |
| Best Overall Tumor Response | Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment) | Antitumor activity was assessed by best overall tumor response. |
| Objective Response Rate (ORR) | Baseline until end of treatment (up to 1 year after the last participant begins study drug treatment) | Objective response based on assessment of confirmed composite complete response (CRc) or partial response (PR) according to disease specific criteria \[modified criteria for response in acute lymphoblastic leukemia (ALL)\]. |
| Percentage of Participants With Relapse of Disease | Baseline until end of treatment (up to 1 year after the last participant begins study drug treatment) | Relapse is defined as progressive disease (PD) following complete response (CR). Rate of relapse was only calculated for the subgroup of participants with complete response. |
| Time to Disease Response | Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment) | Time to disease response was measured from the start of moxetumomab pasudotox administration to the first documentation of response (CR or PR) and was assessed in participants who achieved objective response. |
| Duration of Response (DR) | Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment | Duration of response was defined as the duration from the first documentation of objective response to the first documented disease progression. |
| Time to Disease Progression (TDP) | Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment | Time to disease progression was measured from the start of treatment with moxetumomab pasudotox until the documentation of disease progression. Number of progressions were reported here. |
| Progression-Free Survival (PFS) | Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment) | Progression-free survival was measured from the start of treatment with moxetumomab pasudotox until the documentation of disease progression or death due to any cause, whichever occurs first. Number of progressions/deaths were reported here. |
| Overall Survival (OS) | Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment) | Overall survival was determined as the time from the start of treatment with Moxetumomab Pasudotox until death. Number of deaths were reported here. |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| CD22 Expression Cells in Peripheral Blood by Best Response | Baseline until end of treatment (up to 1 year after the last participant begins study drug treatment) | Participants malignant cells (peripheral blood) was tested for cluster of differentiation 22 (CD22) expression by fluorescence-activated cell sorter (FACS) analysis. |
| Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment) | Potential biomarkers include orthostatic blood pressure, albumin levels, weight change, edema and hypoxia were evaluated. |
| Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Baseline until end of treatment (up to 1 year after the last participant begins study drug treatment) | Participants tested for immunogenicity to CAT-8015 (moxetumomab pasudotox) prior to enrollment, before each cycle and at end of study. The neutralization assay measures the capacity of participant's plasma (antibodies) to inhibit the binding of moxetumomab pasudotox to its target, cluster of differentiation 22 (CD22), coated onto enzyme linked immunosorbent assay (ELISA) plates. It was used as a direct surrogate for biological activity based on the mechanism of action of this drug. Significant level of neutralizing antibody activity defined as the capacity of test plasma to inhibit greater than (\>)50 percentage (%) of the binding of CAT-8015 to CD22 using an ELISA-based method. |
Countries
Canada, United States
Participant flow
Pre-assignment details
A total of 57 participants were enrolled of which 55 participants received treatment.
Participants by arm
| Arm | Count |
|---|---|
| 5 Microgram Per Kilogram (mcg/kg) Participants received intravenous infusion of 5 mcg/kg moxetumomab pasudotox (CAT-8015) without concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle. | 1 |
| 10 Microgram Per Kilogram (mcg/kg) Participants received intravenous infusion of 10 mcg/kg moxetumomab pasudotox (CAT-8015) without concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle. | 1 |
| 20 Microgram Per Kilogram (mcg/kg): Schema A Participants received intravenous infusion of 20 mcg/kg moxetumomab pasudotox (CAT-8015) without concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle. | 1 |
| 20 Microgram Per Kilogram (mcg/kg): Schema B Participants received intravenous infusion of 20 mcg/kg moxetumomab pasudotox (CAT-8015) with concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle. | 4 |
| 30 Microgram Per Kilogram (mcg/kg): Schema A Participants received intravenous infusion of 30 mcg/kg moxetumomab pasudotox (CAT-8015) without concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle. | 4 |
| 30 Microgram Per Kilogram (mcg/kg): Schema B Participants received intravenous infusion of 30 mcg/kg moxetumomab pasudotox (CAT-8015) with concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle. | 5 |
| 40 Microgram Per Kilogram (mcg/kg): Schema B Participants received intravenous infusion of 40 mcg/kg moxetumomab pasudotox (CAT-8015) with concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle. | 8 |
| 32 Microgram Per Kilogram (mcg/kg): Schema C Participants received intravenous infusion of 32 mcg/kg moxetumomab pasudotox (CAT-8015) of process 3 material every other day (QoD) in a 21-day cycle for a total of 10 doses per cycle. | 11 |
| 50 Microgram Per Kilogram (mcg/kg): Schema B Participants received intravenous infusion of 50 mcg/kg moxetumomab pasudotox (CAT-8015) without concomitant corticosteroid administration every other day (QoD) in a 21-day cycle for a total of 6 doses per cycle. | 6 |
| 50 Microgram Per Kilogram (mcg/kg): Schema C Participants received intravenous infusion of 50 mcg/kg moxetumomab pasudotox (CAT-8015) continuous every other day (QoD) in a 21-day cycle for a total of 10 doses per cycle. | 14 |
| Total | 55 |
Withdrawals & dropouts
| Period | Reason | FG000 | FG001 | FG002 | FG003 | FG004 | FG005 | FG006 | FG007 | FG008 | FG009 |
|---|---|---|---|---|---|---|---|---|---|---|---|
| Overall Study | Adverse Event | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 3 | 1 | 4 |
| Overall Study | Death | 0 | 0 | 0 | 1 | 0 | 0 | 1 | 0 | 0 | 0 |
| Overall Study | Disease progression | 1 | 0 | 0 | 1 | 0 | 2 | 4 | 3 | 5 | 3 |
| Overall Study | Investigator Discretion | 0 | 0 | 0 | 0 | 0 | 1 | 0 | 3 | 0 | 0 |
| Overall Study | Other | 0 | 1 | 1 | 2 | 4 | 0 | 3 | 2 | 0 | 6 |
Baseline characteristics
| Characteristic | 5 Microgram Per Kilogram (mcg/kg) | 10 Microgram Per Kilogram (mcg/kg) | 20 Microgram Per Kilogram (mcg/kg): Schema A | 20 Microgram Per Kilogram (mcg/kg): Schema B | 30 Microgram Per Kilogram (mcg/kg): Schema A | 30 Microgram Per Kilogram (mcg/kg): Schema B | 40 Microgram Per Kilogram (mcg/kg): Schema B | 32 Microgram Per Kilogram (mcg/kg): Schema C | 50 Microgram Per Kilogram (mcg/kg): Schema B | 50 Microgram Per Kilogram (mcg/kg): Schema C | Total |
|---|---|---|---|---|---|---|---|---|---|---|---|
| Age, Continuous | 17 Years | 8 Years | 17 Years | 12.8 Years STANDARD_DEVIATION 6.8 | 9 Years STANDARD_DEVIATION 2.7 | 14 Years STANDARD_DEVIATION 4.7 | 8.6 Years STANDARD_DEVIATION 5.3 | 13.8 Years STANDARD_DEVIATION 6.3 | 12.8 Years STANDARD_DEVIATION 8.3 | 14.3 Years STANDARD_DEVIATION 5.5 | 12.7 Years STANDARD_DEVIATION 5.9 |
| Sex: Female, Male Female | 1 Participants | 0 Participants | 0 Participants | 3 Participants | 0 Participants | 0 Participants | 3 Participants | 6 Participants | 2 Participants | 6 Participants | 21 Participants |
| Sex: Female, Male Male | 0 Participants | 1 Participants | 1 Participants | 1 Participants | 4 Participants | 5 Participants | 5 Participants | 5 Participants | 4 Participants | 8 Participants | 34 Participants |
Adverse events
| Event type | EG000 affected / at risk | EG001 affected / at risk | EG002 affected / at risk | EG003 affected / at risk | EG004 affected / at risk | EG005 affected / at risk | EG006 affected / at risk | EG007 affected / at risk | EG008 affected / at risk | EG009 affected / at risk |
|---|---|---|---|---|---|---|---|---|---|---|
| deaths Total, all-cause mortality | — / — | — / — | — / — | — / — | — / — | — / — | — / — | — / — | — / — | — / — |
| other Total, other adverse events | 1 / 1 | 1 / 1 | 1 / 1 | 4 / 4 | 4 / 4 | 5 / 5 | 8 / 8 | 11 / 11 | 6 / 6 | 14 / 14 |
| serious Total, serious adverse events | 1 / 1 | 1 / 1 | 1 / 1 | 4 / 4 | 3 / 4 | 2 / 5 | 5 / 8 | 7 / 11 | 4 / 6 | 9 / 14 |
Outcome results
Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox
The AUC (0 to infinity) is the area under the plasma concentration-time curve from time zero to infinity hours.
Time frame: Cycles 1, 2 and every 4th cycle: pre-dose, end of infusion (EOI), 1, 1.5, 2.5, 4 and 8 hours post-dose of Dose 1; pre-dose and end of infusion after Dose 6
Population: Evaluable Population for Efficacy included all participants who received any treatment of study drug and had at least 1 disease assessment after the initiation of study drug.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox | NA hour*nanogram per milliliter (h.ng/mL) | — |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox | NA hour*nanogram per milliliter (h.ng/mL) | — |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox | 744 hour*nanogram per milliliter (h.ng/mL) | Standard Deviation 514 |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox | 1060 hour*nanogram per milliliter (h.ng/mL) | Standard Deviation 508 |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox | 844 hour*nanogram per milliliter (h.ng/mL) | Standard Deviation 385 |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox | 1320 hour*nanogram per milliliter (h.ng/mL) | Standard Deviation 554 |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Area Under the Serum Concentration Time Curve From Time Zero to Infinity (AUC [0 to Infinity]) for Moxetumomab Pasudotox | 1690 hour*nanogram per milliliter (h.ng/mL) | Standard Deviation 689 |
Best Overall Tumor Response
Antitumor activity was assessed by best overall tumor response.
Time frame: Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Evaluable Population for Efficacy included all participants who received any treatment of moxetumomab pasudotox and had at least 1 disease assessment after the initiation of moxetumomab pasudotox. Here, N is number of participants analyzed for this outcome measure.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Best Overall Tumor Response | Partial response | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Best Overall Tumor Response | Stable disease | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Best Overall Tumor Response | Composite complete response | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Best Overall Tumor Response | Hematological activity | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Best Overall Tumor Response | Progressive disease | 1 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Best Overall Tumor Response | Complete response | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Progressive disease | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Complete response | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Partial response | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Stable disease | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Composite complete response | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Hematological activity | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Composite complete response | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Partial response | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Stable disease | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Complete response | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Progressive disease | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Hematological activity | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Hematological activity | 2 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Progressive disease | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Stable disease | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Composite complete response | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Complete response | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Best Overall Tumor Response | Partial response | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Complete response | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Partial response | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Hematological activity | 3 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Stable disease | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Composite complete response | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Progressive disease | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Complete response | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Partial response | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Progressive disease | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Hematological activity | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Stable disease | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Composite complete response | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Partial response | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Complete response | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Hematological activity | 3 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Composite complete response | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Stable disease | 2 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Progressive disease | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Partial response | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Progressive disease | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Stable disease | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Composite complete response | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Complete response | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Best Overall Tumor Response | Hematological activity | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Partial response | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Complete response | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Hematological activity | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Stable disease | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Progressive disease | 3 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Composite complete response | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Partial response | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Composite complete response | 3 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Stable disease | 4 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Progressive disease | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Hematological activity | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | complete response with incomplete count recovery | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Best Overall Tumor Response | Complete response | 3 Participants |
Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate
The 12-lead ECG data were summarized and evaluated for the following parameters: ,QT, QTC intervals and ventricular rate. Change from baseline in these parameters were reported.
Time frame: Baseline and end of treatment (up to 1 year after the last participants begins study drug treatment)
Population: Safety population included all participants who received any treatment of study drug.
| Arm | Measure | Group | Value (MEAN) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | 20.0 milli seconds (msec) |
| 10 Microgram Per Kilogram (mcg/kg) | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | 69.0 milli seconds (msec) |
| 10 Microgram Per Kilogram (mcg/kg) | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | -107 milli seconds (msec) |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | NA milli seconds (msec) |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | NA milli seconds (msec) |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | NA milli seconds (msec) |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | NA milli seconds (msec) |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | NA milli seconds (msec) |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | NA milli seconds (msec) |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | NA milli seconds (msec) |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | NA milli seconds (msec) |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | NA milli seconds (msec) |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | -26.0 milli seconds (msec) |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | 29.0 milli seconds (msec) |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | -52.0 milli seconds (msec) |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | NA milli seconds (msec) |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | NA milli seconds (msec) |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | NA milli seconds (msec) |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | NA milli seconds (msec) |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | NA milli seconds (msec) |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QT interval | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | Ventricluar rate | NA milli seconds (msec) |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Change From Baseline to End of Treatment in Clinical Findings in Electrocardiogram (ECG) QT, QTC Interval and Ventricular Rate | QTC interval | NA milli seconds (msec) |
Duration of Response (DR)
Duration of response was defined as the duration from the first documentation of objective response to the first documented disease progression.
Time frame: Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment
Population: Evaluable Population for Efficacy. Here, N is number of participants with objective disease response in the respective cohort. DR could not be estimated as none of the participants experienced OR in the 5 mcg/kg, 20 mcg/kg (schema A) and 30 mcg/kg (schema A).
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Duration of Response (DR) | NA months |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Duration of Response (DR) | 2.3 months |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Duration of Response (DR) | NA months |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Duration of Response (DR) | NA months |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Duration of Response (DR) | NA months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Duration of Response (DR) | NA months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Duration of Response (DR) | NA months |
Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox
The Cmax is the maximum observed plasma concentration of Moxetumomab Pasudotox.
Time frame: Cycles 1, 2 and every 4th cycle: pre-dose, end of infusion (EOI), 1, 1.5, 2.5, 4 and 8 hours post-dose of Dose 1; pre-dose and end of infusion after Dose 6
Population: Evaluable Population for efficacy included all participants who received any treatment of study drug and had at least 1 disease assessment after the initiation of study drug.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox | NA nanogram per milliliter (ng/mL) | — |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox | 126 nanogram per milliliter (ng/mL) | — |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox | 274 nanogram per milliliter (ng/mL) | Standard Deviation 135 |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox | 446 nanogram per milliliter (ng/mL) | Standard Deviation 126 |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox | 446 nanogram per milliliter (ng/mL) | Standard Deviation 156 |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox | 555 nanogram per milliliter (ng/mL) | Standard Deviation 196 |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Maximum Observed Serum Concentration (Cmax) for Moxetumomab Pasudotox | 755 nanogram per milliliter (ng/mL) | Standard Deviation 188 |
Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline
Ophthalmologic examination included evaluation of retinal, corneal and lens abnormalities at baseline and end of treatment that were not present at screening. Participants who experienced abnormalitities during ophthalmologic examination recorded and reported.
Time frame: Baseline and end of treatment (up to 1 year after the last participants begins study drug treatment)
Population: Safety population included all participants who received any treatment of study drug.
| Arm | Measure | Value (NUMBER) |
|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Abnormalities in Ophthalmologic Examination at End of Treatment That Were Not Present at Baseline | 0 Participants |
Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG
Number of participants with abnormal ECG changes (compared with baseline) as assessed by study cardiologist
Time frame: Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Safety population included all participants who received any treatment of study drug.
| Arm | Measure | Value (NUMBER) |
|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Change From Baseline in Normal Sinus Rhythm Findings in ECG | 0 participants |
Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs)
An abnormal laboratory finding which required an action or intervention by the investigator, or a finding judged by the investigator to represent a change beyond the range of normal physiologic fluctuation were reported as an adverse event. Treatment-emergent were events between first dose of study drug and 30 days after the last dose that were absent before treatment or that worsened relative to pretreatment state. Number of participants with grade 3 or higher treatment-emergent adverse events (5% cut off) for laboratory abnormalities were reported as clinically relevant laboratory changes.
Time frame: From start of study drug administration up to 30 days after the last dose of study drug
Population: Safety population included all participants who received any treatment of study drug.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 2 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 3 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 3 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 3 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 3 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 5 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Lymphopenia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Neutropenia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Leukopenia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Thrombocytopenia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Febrile neutropenia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Clinically Significant Laboratory Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Anemia | 3 Participants |
Number of Participants With Dose Limiting Toxicities (DLTs)
Adverse events that were suspected of a relationship to moxetumomab pasudotox and were greater than or equal to (\>=) Grade 3 in severity were considered DLTs with the following additional criteria or exceptions: Participants with hematologic abnormalities of any grade, Grade 2 allergic reactions of bronchospasm or urticaria, or any Grade ≥ 3 allergic reaction, in the presence of premedication.
Time frame: Day 1 up to 21 days of Cycle 1 (each cycle duration was of 21 days)
Population: Evaluable Population for DLT included all participants who received any treatment of moxetumomab pasudotox (CAT-8015) and completed the DLT period without a DLT, or did not complete the DLT period due to a DLT. Here, N is number of participants evaluated for this outcome measure.
| Arm | Measure | Value (NUMBER) |
|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Dose Limiting Toxicities (DLTs) | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Dose Limiting Toxicities (DLTs) | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Dose Limiting Toxicities (DLTs) | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Dose Limiting Toxicities (DLTs) | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Dose Limiting Toxicities (DLTs) | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Dose Limiting Toxicities (DLTs) | 1 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Dose Limiting Toxicities (DLTs) | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Dose Limiting Toxicities (DLTs) | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Dose Limiting Toxicities (DLTs) | 1 participants |
Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs)
An adverse event (AE) was any untoward medical occurrence attributed to study drug in a participant who received investigational product. A serious adverse event (SAE) was an AE resulting in any of the following outcomes or deemed significant for any other reason: death; initial or prolonged inpatient hospitalization; life-threatening experience (immediate risk of dying); persistent or significant disability/incapacity; congenital anomaly. Treatment-emergent were events between administration of investigational product and 30 days after the last dose of study drug that were absent before treatment or that worsened relative to pre-treatment state.
Time frame: From start of study drug administration until 30 days after the last dose of study drug
Population: Safety Population included all participants who received any treatment of study drug.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 1 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 4 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 4 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 4 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 3 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 2 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 5 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 8 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 5 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 7 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 11 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 4 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 6 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TEAEs | 14 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Treatment Emergent Adverse Events (TEAEs) and Treatment Emergent Serious Adverse Events (TESAEs) | TESAEs | 9 Participants |
Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs)
Vital signs included parameters as heart rate, blood pressure, temperature, weight, pulse oximetry and respiratory rate. TEAEs were events present at baseline that worsened in intensity after administration of study drug or events absent at baseline that emerged after administration of study drug, for the period extending to 30 days after the last dose of study drug.
Time frame: From start of study drug administration until 30 days after the last dose of study drug
Population: Safety Population included all participants who received any treatment of study drug.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 1 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 2 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 2 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 4 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 3 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 2 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 3 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 2 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 2 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 2 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 2 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 2 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 3 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Arrhythmia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Bradycardia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachycardia | 3 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Pyrexia | 7 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Dyspnoea | 4 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Respiratory distress | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus bradycardia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypertension | 5 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Sinus tachycardia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Tachypnoea | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Vital Signs Abnormalities Recorded as Treatment-Emergent Adverse Events (TEAEs) | Hypotension | 1 Participants |
Objective Response Rate (ORR)
Objective response based on assessment of confirmed composite complete response (CRc) or partial response (PR) according to disease specific criteria \[modified criteria for response in acute lymphoblastic leukemia (ALL)\].
Time frame: Baseline until end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Efficacy population included all participants who received any treatment of study drug and had at least 1 disease assessment after the initiation of study drug. Here, N is number of participants analyzed for this outcome measure.
| Arm | Measure | Value (NUMBER) |
|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Objective Response Rate (ORR) | 0 percentage of participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Objective Response Rate (ORR) | 100 percentage of participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Objective Response Rate (ORR) | 0 percentage of participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Objective Response Rate (ORR) | 25.0 percentage of participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Objective Response Rate (ORR) | 0 percentage of participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Objective Response Rate (ORR) | 50.0 percentage of participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Objective Response Rate (ORR) | 14.3 percentage of participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Objective Response Rate (ORR) | 42.9 percentage of participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Objective Response Rate (ORR) | 33.3 percentage of participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Objective Response Rate (ORR) | 41.7 percentage of participants |
Overall Survival (OS)
Overall survival was determined as the time from the start of treatment with Moxetumomab Pasudotox until death. Number of deaths were reported here.
Time frame: Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Evaluable Population for Efficacy included all participants who received any treatment of moxetumomab pasudotox and had at least 1 disease assessment after the initiation of moxetumomab pasudotox. Here, N is number of participants analyzed for this outcome measure.
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Overall Survival (OS) | 0.2 months |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Overall Survival (OS) | 3.6 months |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Overall Survival (OS) | 1.7 months |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Overall Survival (OS) | 2.1 months |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Overall Survival (OS) | NA months |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Overall Survival (OS) | 4.6 months |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Overall Survival (OS) | 9.4 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Overall Survival (OS) | NA months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Overall Survival (OS) | 4.1 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Overall Survival (OS) | 12.7 months |
Percentage of Participants With Relapse of Disease
Relapse is defined as progressive disease (PD) following complete response (CR). Rate of relapse was only calculated for the subgroup of participants with complete response.
Time frame: Baseline until end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Efficacy population. Here, N is number of participants with CR in the respective cohort. Rate of relapse could not be estimated as none of the participants experienced CR in the 5 mcg/kg, 20 mcg/kg (Schema A) and 30 mcg/kg (schema A) cohort of the study.
| Arm | Measure | Value (NUMBER) |
|---|---|---|
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Percentage of Participants With Relapse of Disease | 0 percentage of participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Percentage of Participants With Relapse of Disease | 100 percentage of participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Percentage of Participants With Relapse of Disease | 0 percentage of participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Percentage of Participants With Relapse of Disease | 0 percentage of participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Percentage of Participants With Relapse of Disease | 0 percentage of participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Percentage of Participants With Relapse of Disease | 50 percentage of participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Percentage of Participants With Relapse of Disease | 0 percentage of participants |
Progression-Free Survival (PFS)
Progression-free survival was measured from the start of treatment with moxetumomab pasudotox until the documentation of disease progression or death due to any cause, whichever occurs first. Number of progressions/deaths were reported here.
Time frame: Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Evaluable Population for Efficacy included all participants who received any treatment of moxetumomab pasudotox and had at least 1 disease assessment after the initiation of moxetumomab pasudotox. Here, N is number of participants analyzed for this outcome measure.
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Progression-Free Survival (PFS) | 0.2 months |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Progression-Free Survival (PFS) | 3.6 months |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Progression-Free Survival (PFS) | 1.7 months |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Progression-Free Survival (PFS) | 1.8 months |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Progression-Free Survival (PFS) | NA months |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Progression-Free Survival (PFS) | 3.1 months |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Progression-Free Survival (PFS) | 1.2 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Progression-Free Survival (PFS) | 1.5 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Progression-Free Survival (PFS) | 0.8 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Progression-Free Survival (PFS) | 5.8 months |
Systemic Clearance (CL) for Moxetumomab Pasudotox
The CL is a quantitative measure of the rate at which a drug substance is removed from the body. The total systemic clearance after intravenous dose was estimated by dividing the total administered dose by the plasma area under the plasma concentration-time curve from time zone to infinite time (AUC\[0-infinity\]).
Time frame: Cycles 1, 2 and every 4th cycle: pre-dose, end of infusion (EOI), 1, 1.5, 2.5, 4 and 8 hours post-dose of Dose 1; pre-dose and end of infusion after Dose 6
Population: Evaluable Population for Efficacy included all participants who received any treatment of study drug and had at least 1 disease assessment after the initiation of study drug.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Systemic Clearance (CL) for Moxetumomab Pasudotox | NA milliliter per hour per kilogram | — |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Systemic Clearance (CL) for Moxetumomab Pasudotox | NA milliliter per hour per kilogram | — |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Systemic Clearance (CL) for Moxetumomab Pasudotox | 40.5 milliliter per hour per kilogram | Standard Deviation 32.3 |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Systemic Clearance (CL) for Moxetumomab Pasudotox | 35.4 milliliter per hour per kilogram | Standard Deviation 18.2 |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Systemic Clearance (CL) for Moxetumomab Pasudotox | 47.5 milliliter per hour per kilogram | Standard Deviation 28.2 |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Systemic Clearance (CL) for Moxetumomab Pasudotox | 34.6 milliliter per hour per kilogram | Standard Deviation 13.2 |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Systemic Clearance (CL) for Moxetumomab Pasudotox | 35.3 milliliter per hour per kilogram | Standard Deviation 14.7 |
Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox
Plasma decay half-life is the time measured for the plasma concentration to decrease by one half.
Time frame: Cycles 1, 2 and every 4th cycle: pre-dose, end of infusion (EOI), 1, 1.5, 2.5, 4 and 8 hours post-dose of Dose 1; pre-dose and end of infusion after Dose 6
Population: Evaluable Population for Efficacy included all participants who received any treatment of study drug and had at least 1 disease assessment after the initiation of study drug.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox | NA hour (h) | — |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox | NA hour (h) | — |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox | 0.906 hour (h) | Standard Deviation 0.545 |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox | 1.32 hour (h) | Standard Deviation 0.893 |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox | 0.997 hour (h) | Standard Deviation 0.557 |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox | 0.880 hour (h) | Standard Deviation 0.522 |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Terminal Phase Elimination Half Life (t1/2) for Moxetumomab Pasudotox | 1.38 hour (h) | Standard Deviation 0.753 |
Time to Disease Progression (TDP)
Time to disease progression was measured from the start of treatment with moxetumomab pasudotox until the documentation of disease progression. Number of progressions were reported here.
Time frame: Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment
Population: Evaluable Population for Efficacy included all participants who received any treatment of moxetumomab pasudotox and had at least 1 disease assessment after the initiation of moxetumomab pasudotox. Here, N is number of participants analyzed for this outcome measure.
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Time to Disease Progression (TDP) | 0.2 months |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Time to Disease Progression (TDP) | NA months |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Time to Disease Progression (TDP) | NA months |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Time to Disease Progression (TDP) | 2 months |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Time to Disease Progression (TDP) | NA months |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Time to Disease Progression (TDP) | NA months |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Time to Disease Progression (TDP) | 1.2 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Time to Disease Progression (TDP) | 1.5 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Time to Disease Progression (TDP) | 0.8 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Time to Disease Progression (TDP) | NA months |
Time to Disease Response
Time to disease response was measured from the start of moxetumomab pasudotox administration to the first documentation of response (CR or PR) and was assessed in participants who achieved objective response.
Time frame: Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Evaluable Population for Efficacy. Here, N is number of participants with objective disease response in the respective cohort. Time to disease response could not be estimated as none of the participants experienced OR in the 5 mcg/kg, 20 mcg/kg (schema A) and 30 mcg/kg (schema A).
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Time to Disease Response | 0.69 months |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Time to Disease Response | 0.49 months |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Time to Disease Response | 0.66 months |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Time to Disease Response | 0.49 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Time to Disease Response | 0.72 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Time to Disease Response | 0.62 months |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Time to Disease Response | 0.66 months |
Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants
An abnormal chemistry finding which required an action or intervention by the investigator, or a finding judged by the investigator to represent a change beyond the range of normal physiologic fluctuation were reported as an adverse event. Treatment-emergent were events between first dose of study drug and 30 days after the last dose that were absent before treatment or that worsened relative to pretreatment state.
Time frame: From start of study drug administration up to 30 days after the last dose of study drug
Population: Safety population included all participants who received any treatment of study drug.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 1 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 1 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 1 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 0 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 1 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 1 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 2 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 2 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 3 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 2 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 4 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 3 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 2 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 3 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 0 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 2 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 4 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 2 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 4 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 5 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 2 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 3 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 4 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood lactate dehydrogenase increased | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood urea increased | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperphosphataemia | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypocalcaemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Aspartate aminotransferase increased | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyponatraemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypophosphataemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Blood creatinine increased | 6 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hyperglycaemia | 2 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Alanine aminotransferase increased | 3 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypomagnesaemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypokalaemia | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Treatment-Emergent Adverse Events (TEAEs) Related to Chemistry Abnormalities Occurring in Greater Than (>) 5 Percent of Participants | Hypoalbuminaemia | 2 Participants |
CD22 Expression Cells in Peripheral Blood by Best Response
Participants malignant cells (peripheral blood) was tested for cluster of differentiation 22 (CD22) expression by fluorescence-activated cell sorter (FACS) analysis.
Time frame: Baseline until end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Safety population included all participants who received any treatment of study drug. Here, n = participants evaluable for specified category for each arm, respectively
| Arm | Measure | Group | Value (MEDIAN) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | NA sites per cell |
| 10 Microgram Per Kilogram (mcg/kg) | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | NA sites per cell |
| 10 Microgram Per Kilogram (mcg/kg) | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | 13210.0 sites per cell |
| 10 Microgram Per Kilogram (mcg/kg) | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | NA sites per cell |
| 10 Microgram Per Kilogram (mcg/kg) | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | NA sites per cell |
| 10 Microgram Per Kilogram (mcg/kg) | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | 14519.0 sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | 14519.0 sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | 5050.0 sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | NA sites per cell |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | NA sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | 3533.5 sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | NA sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | 8083.0 sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | 749.0 sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | NA sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | 749.0 sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | 2111.0 sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | NA sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | NA sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | NA sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | 2476.0 sites per cell |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | NA sites per cell |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | NA sites per cell |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | 5587.0 sites per cell |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | 3705.0 sites per cell |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | 3058.0 sites per cell |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | 3058.0 sites per cell |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | 2387.0 sites per cell |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | 1415.0 sites per cell |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | NA sites per cell |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | NA sites per cell |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | NA sites per cell |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | 1427.0 sites per cell |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | 8513.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | 1350.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | 2772.5 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | 2521.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | 4514.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | 2772.5 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | 5505.5 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | NA sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | 1643.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | 2642.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | 5620.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | 5620.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | NA sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Composite complete response(n=0,1,0,1,0,1,0,2,2,3) | 4331.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Hematological activity (n=0,0,0,2,3,0,3,1,1,2) | 2223.5 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Stable response (n=0,0,1,1,1,1,2,1,0,4) | 3904.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Complete response (n=0,1,0,1,0,1,0,2,2,3) | 4331.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Partial response (n=0,0,0,0,0,1,0,1,0,2) | 2366.0 sites per cell |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | CD22 Expression Cells in Peripheral Blood by Best Response | Progressive disease (n=1,0,0,0,0,1,1,2,3,1) | 3102.0 sites per cell |
Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody
Participants tested for immunogenicity to CAT-8015 (moxetumomab pasudotox) prior to enrollment, before each cycle and at end of study. The neutralization assay measures the capacity of participant's plasma (antibodies) to inhibit the binding of moxetumomab pasudotox to its target, cluster of differentiation 22 (CD22), coated onto enzyme linked immunosorbent assay (ELISA) plates. It was used as a direct surrogate for biological activity based on the mechanism of action of this drug. Significant level of neutralizing antibody activity defined as the capacity of test plasma to inhibit greater than (\>)50 percentage (%) of the binding of CAT-8015 to CD22 using an ELISA-based method.
Time frame: Baseline until end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Safety population included all participants who received any treatment of study drug.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 1 Participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 0 Participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 0 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 1 Participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 0 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 1 Participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 1 Participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 5 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 0 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 1 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | Neutralizing ADA present by functional assay | 3 Participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Positive Anti-Drug Antibody (ADA) and Neutralizing Antibody | ADA present by screening assay | 1 Participants |
Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS)
Potential biomarkers include orthostatic blood pressure, albumin levels, weight change, edema and hypoxia were evaluated.
Time frame: Baseline and end of treatment (up to 1 year after the last participant begins study drug treatment)
Population: Safety population included all participants who received any treatment of study drug.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 1 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 1 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 1 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 1 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 1 participants |
| 10 Microgram Per Kilogram (mcg/kg) | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 1 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 20 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 1 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 4 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 4 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 4 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 3 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema A | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 1 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 1 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 1 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 1 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 2 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 30 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 1 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 1 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 3 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 1 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 1 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 1 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 4 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 4 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 1 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 3 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 4 participants |
| 40 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 1 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 8 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 8 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 7 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 1 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 8 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 0 participants |
| 32 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 8 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 9 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 2 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 9 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 8 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 11 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 3 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 2 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 11 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema B | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 2 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 6 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 4 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 5 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 6 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 6 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; CLS | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; CLS | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; No CLS | 3 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed no later CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; No CLS | 13 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; CLS | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; Developed after CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; No Event; CLS | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; No Event; No CLS | 8 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; Event; No CLS | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Change in Albumin; Event; No CLS | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypertension; Event; No CLS | 5 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; No CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; Event; Developed no later than CLS | 0 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; No CLS | 12 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; No Event; No CLS | 13 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Hypoxia; No Event; CLS | 1 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Weight change; No Event; No CLS | 10 participants |
| 50 Microgram Per Kilogram (mcg/kg): Schema C | Number of Participants With Potential Biomarkers of Predicting Capillary Leak Syndrome (CLS) | Edema; Event; Developed after CLS | 0 participants |