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Chemotherapy Followed by Allogeneic Stem Cell Transplantation for Hematologic Malignancies

Non-Myeloablative Chemotherapy Followed by HLA-Matched Related Allogeneic Stem Cell Transplantation for Hematologic Malignancies

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00741455
Enrollment
18
Registered
2008-08-26
Start date
2004-06-30
Completion date
2020-05-01
Last updated
2020-11-23

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Hematologic Malignancies

Keywords

Non-myeloablative transplant, Chronic Myelogenous Leukemia, Acute Myelogenous Leukemia, Acute Lymphoblastic Leukemia, Multiple Myeloma, Non-Hodgkin's Lymphoma, Myelodysplastic syndrome, Chronic Lymphocytic Leukemia, Hodgkin's Disease

Brief summary

The purpose of this study is to determine disease-free survival, overall survival, time to progression, regimen-related toxicity and/or treatment-related mortality in patients with hematologic malignancies treated with non-myeloablative chemotherapy followed by allogeneic stem cell transplant.

Detailed description

Allogeneic bone marrow transplantation (BMT) became feasible in the 1960s after elucidation of the Human Leukocyte Antigen (HLA) complex. Since then, the therapy has evolved into an effective treatment for many hematologic disorders. Otherwise incurable malignancies are frequently cured by this approach, with the likelihood of cure ranging from 10% to 85%, depending on the disease and the disease status. The treatment strategy incorporates very large doses of chemotherapy and often radiation to eliminate cancer cells and to immunosuppress the recipient to allow the engraftment of donor cells. Donor cells give rise to hematopoiesis within two to three weeks, rescuing the patient from the effects of high dose therapy. In the ideal situation, immune recovery and recipient-specific tolerance occurs over the following 6-18 months, and the patient is cured of their underlying malignancy, off immunosuppression, with a functionally intact donor-derived immune system. However, complications are common and include fatal organ damage from the effects of high dose chemotherapy, infection, hemorrhage, and, in particular, graft-versus-host disease (GvHD). A realistic estimate of transplant-related mortality in the standard HLA-matched sibling setting is approximately 25%. The risk of treatment-related mortality limits the success and certainly precludes its use in older patients. Thus, new strategies in transplantation are needed. With the growing understanding that much of the curative potential of allogeneic bone marrow or stem cell transplant (SCT) is from an immune anti-tumor effect of donor cells, known as graft-versus-leukemia (GvL) or graft-versus-tumor (GvT), a new strategy is being employed that shifts the emphasis from high-dose chemo-radiotherapy to donor-derived, immune-mediated anti-tumor therapy. In this approach, patients receive preparative regimens that, while having some anti-tumor activity, are mainly designed to be immunosuppressive enough to allow engraftment of donor stem cells and lymphocytes. Engrafted lymphocytes then mediate a GvL effect; if the GvL effect of the initial transplant is not sufficient, then additional lymphocytes may be infused (achievement of engraftment allows additional lymphocytes to take in the recipient without requiring any additional conditioning of the recipient). The lower intensity of the preparative regimen lessens the overall toxicity by minimizing the doses of chemo-radiotherapy. In addition, less intensive preparative regimens may be associated with less GvHD, as much evidence suggests that high-dose therapy contributes to the syndrome of GvHD by causing tissue damage, leading to a cytokine milieu which enhances activation of graft-versus-host (GvH) effector cells. Thus, such an approach may allow the safer use of allogeneic transplants in standard populations and may allow extension of allogeneic transplantation to patients who could not receive standard (myeloablative) transplants because of age or co-morbidities. This protocol investigates a non-myeloablative transplant approach, using fludarabine and cyclophosphamide, to allow engraftment of allogeneic cells, which may then mediate anti-tumor effects.

Interventions

PROCEDUREStem Cell Transplant

Donor: Prior to mobilization, leukapheresis to collect CD3+ cells. The donor will then receive G-CSF (10 mcg/kg/day) with leukapheresis collection of peripheral blood stem cells on days 5, 6 and 7 as needed. Goal of leukapheresis will be \> 5 x 106 CD34+cells/kg of recipient. Patient: Peripheral Blood Stem Cell (PBSC) Transplant. Fludarabine 25mg/m2/d IV over 30 minutes on days -6 to -2, followed by cyclophosphamide 1g/m2/d IV on days -3 and -2. This will be followed by allogeneic stem cell infusion 48 hours later. Donor Lymphocyte Infusion (DLI) and Adjustment of Immunosuppression: Cyclosporine (CSA) and methotrexate (MTX) will be used for GvHD prophylaxis with target CSA levels of 200-400 ng/ml.

DRUGG-CSF

10 mcg/kg/day on days 5, 6, and 7

DRUGFludarabine

25 mg/m2/d IV over 30 minutes on days -6 to -2

DRUGcyclophosphamide

1 g/m2/d IV on days -3 and -2

DRUGCyclosporine

used for GvHD prophylaxis with target CSA levels of 200-400 ng/ml

DRUGMethotrexate

used for GvHD prophylaxis with target CSA levels of 200-400 ng/ml

Sponsors

Dartmouth-Hitchcock Medical Center
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 75 Years
Healthy volunteers
No

Inclusion criteria

* Age: 18-75 years * Diseases 1. Chronic myelogenous leukemia (CML) * First chronic phase or later * Accelerated phase 2. Acute myelogenous or lymphoblastic leukemia (AML or ALL) * Second or subsequent remission * Patients who have failed an autologous PBSC transplant * First remission with poor risk features, including, but not limited to: For AML- complex chromosome karyotype, abnormalities of chromosome 5 or 7, 12p-, 13+, 8+, t(9;22), t(11;23) For ALL- t(9;22), t(4;11), t(1;19), myeloid antigen coexpression 3. Myelodysplastic syndrome (MDS) 4. Multiple myeloma - high risk myeloma (poor responders, relapse after autologous PBSCT, chromosome 13 abnormalities) 5. Hodgkin's disease * Primary refractory disease * Relapsed disease (first relapse or later) * Patients who have failed an autologous PBSC transplant 6. Non-Hodgkin's lymphoma Low grade (by Working Formulation) * Relapsed, progressive disease after initial chemotherapy * Primary refractory disease or failure to respond (\>PR) to initial chemotherapy * Patients who have failed an autologous PBSC transplant Intermediate grade (by Working Formulation) * Relapsed disease * Primary refractory disease or failure to respond (\>PR) to initial chemo * Mantle cell lymphoma * Patients who have failed an autologous PBSC transplant 7. Chronic lymphocytic leukemia (CLL) * Patients newly diagnosed with poor prognostic factors, including CD38 expression, Chromosome 11 or 17 abn * T-CLL/PLL * Relapsed or progressive disease, or refractory after Fludarabine * Patients who have failed an autologous PBSC transplant * Donor Availability: Six of six matched HLA A, B and DR identical sibling (or parent or child) or 5/6 related donor with single mismatch at Class I antigen (A or B) * Karnofsky performance status of \>70% * Serum bilirubin \<2x upper limit of normal; transaminases \<3x normal (unless due to disease) * 24 hr urine creatinine clearance of \>40 ml/min. * DLCO \>50% predicted * Left ventricular ejection fraction \>35% * No active infection * Non-pregnant female * Signed informed consent * No major organ dysfunction or psychological problems that preclude compliance and completion of the clinical trial.

Exclusion criteria

* Major organ dysfunction * Pregnant or lactating female * Active infection * Psychological problems that preclude compliance and completion of the clinical trial * Any other condition, that in the judgement of the investigator, affects participant safety or overall participation

Design outcomes

Primary

MeasureTime frameDescription
Number of Participants With Successful Bone Marrow EngraftmentWithin 30 days of bone marrow transplantRates of successful engraftment.

Secondary

MeasureTime frameDescription
Number of Participants Who Achieve Complete Donor ChimerismPost-transplant days +30, +60, +100, +180 and +365Complete donor chimerism
Number of Participants Who Experienced Graft-Versus-Host-DiseasePost-transplant procedure through deathCollect the number of incidents of acute and chronic graft-versus-host disease
Overall Survival Measured in ParticipantsUp to 15 Years Post-TransplantMortality rates in subjects after successful completion of a bone marrow transplant
Collection of Adverse EventsUntil the 6th Bone Marrow Transplant performed in subjects on studyDetermine the level of toxicity experienced by subjects who receive protocol treatment and bone marrow transplant
Assess Disease ResponsePost-transplant procedure through deathReview and assess the tumor response rate

Countries

United States

Participant flow

Participants by arm

ArmCount
Study Treatment
Chemo, stem cell transplantation, HLA-Matched related allogeneic stem cell transplantation, leukapheresis, G-CSF, peripheral blood stem cell transplant, fludarabine, cyclophosphamide, donor lymphocyte infusion, cyclosporine, methotrexate Stem Cell Transplant: Donor: Prior to mobilization, leukapheresis to collect CD3+ cells. The donor will then receive G-CSF (10 mcg/kg/day) with leukapheresis collection of peripheral blood stem cells on days 5, 6 and 7 as needed. Goal of leukapheresis will be \> 5 x 106 CD34+cells/kg of recipient. Patient: Peripheral Blood Stem Cell (PBSC) Transplant. Fludarabine 25mg/m2/d IV over 30 minutes on days -6 to -2, followed by cyclophosphamide 1g/m2/d IV on days -3 and -2. This will be followed by allogeneic stem cell infusion 48 hours later. Donor Lymphocyte Infusion (DLI) and Adjustment of Immunosuppression: Cyclosporine (CSA) and methotrexate (MTX) will be used for GvHD prophylaxis with target CSA levels of 200-400 ng/ml. G-CSF: 10 mcg/k
18
Total18

Baseline characteristics

CharacteristicStudy Treatment
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
0 Participants
Age, Categorical
Between 18 and 65 years
18 Participants
Age, Continuous57 years
Race and Ethnicity Not Collected— Participants
Region of Enrollment
United States
18 participants
Sex: Female, Male
Female
12 Participants
Sex: Female, Male
Male
6 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
10 / 17
other
Total, other adverse events
0 / 0
serious
Total, serious adverse events
0 / 0

Outcome results

Primary

Number of Participants With Successful Bone Marrow Engraftment

Rates of successful engraftment.

Time frame: Within 30 days of bone marrow transplant

ArmMeasureGroupValue (COUNT_OF_PARTICIPANTS)
Study TreatmentNumber of Participants With Successful Bone Marrow EngraftmentEngrafted </= 15 Days1 Participants
Study TreatmentNumber of Participants With Successful Bone Marrow EngraftmentEngrafted 16-30 Days15 Participants
Study TreatmentNumber of Participants With Successful Bone Marrow EngraftmentEngrafted >30 Days1 Participants
Secondary

Assess Disease Response

Review and assess the tumor response rate

Time frame: Post-transplant procedure through death

Population: Data was not collected for this outcome measure

Secondary

Collection of Adverse Events

Determine the level of toxicity experienced by subjects who receive protocol treatment and bone marrow transplant

Time frame: Until the 6th Bone Marrow Transplant performed in subjects on study

Population: Data was not collected for this outcome measure

Secondary

Number of Participants Who Achieve Complete Donor Chimerism

Complete donor chimerism

Time frame: Post-transplant days +30, +60, +100, +180 and +365

ArmMeasureGroupValue (COUNT_OF_PARTICIPANTS)
Study TreatmentNumber of Participants Who Achieve Complete Donor ChimerismComplete Chimerism 30 Days Post Transplant2 Participants
Study TreatmentNumber of Participants Who Achieve Complete Donor ChimerismComplete Chimerism 60 Days Post Transplant2 Participants
Study TreatmentNumber of Participants Who Achieve Complete Donor ChimerismComplete Chimerism 100 Days Post Transplant3 Participants
Study TreatmentNumber of Participants Who Achieve Complete Donor ChimerismComplete Chimerism 180 Days Post Transplant3 Participants
Study TreatmentNumber of Participants Who Achieve Complete Donor ChimerismComplete Chimerism 365 Days Post Transplant4 Participants
Study TreatmentNumber of Participants Who Achieve Complete Donor ChimerismChimerism Unknown1 Participants
Study TreatmentNumber of Participants Who Achieve Complete Donor ChimerismDid not achieve complete donor chimerism2 Participants
Secondary

Number of Participants Who Experienced Graft-Versus-Host-Disease

Collect the number of incidents of acute and chronic graft-versus-host disease

Time frame: Post-transplant procedure through death

Population: Data was not collected for this outcome measure

Secondary

Overall Survival Measured in Participants

Mortality rates in subjects after successful completion of a bone marrow transplant

Time frame: Up to 15 Years Post-Transplant

ArmMeasureGroupValue (COUNT_OF_PARTICIPANTS)
Study TreatmentOverall Survival Measured in ParticipantsSurvival < 1 year post-transplant2 Participants
Study TreatmentOverall Survival Measured in ParticipantsSurvival 1 to < 5 years post-transplant8 Participants
Study TreatmentOverall Survival Measured in ParticipantsSurvival 5 to < 10 years post-transplant0 Participants
Study TreatmentOverall Survival Measured in ParticipantsSurvival 10+ years post-transplant7 Participants

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026