COVID-19
Conditions
Keywords
Convalescent plasma, Transfusion, SARS-CoV-2, Passive immunization
Brief summary
There is currently no treatment available for COVID-19, the acute respiratory illness caused by the novel SAR-CoV-2. Convalescent plasma from patients who have recovered from COVID-19 that contains antibodies to the virus is a potential therapy. On March 25th, 2020, the FDA approved the use of convalescent plasma under the emergency investigational new drug (eIND) category. Randomized trials are needed to determine the efficacy and safety of COVID-19 convalescent plasma for acute COVID-19 infection. The objective of the CONCOR-1 trial is to determine the efficacy of transfusion of COVID-19 convalescent plasma to adult patients admitted to hospital with COVID-19 infection at decreasing the frequency of in-hospital mortality in patients hospitalized for COVID-19. It is hypothesized that treating hospitalized COVID-19 patients with convalescent plasma early in their clinical course will reduce the risk of death, and that other outcomes will be improved including risk of intubation, and length of ICU and hospital stay. This pan-Canadian clinical trial has the potential to improve patient outcomes and reduce the burden on health care resources including reducing the need for ICU beds and ventilators.
Detailed description
Problem to be addressed: In December 2019, the Wuhan Municipal Health Committee (Wuhan, China) identified an outbreak of viral pneumonia cases of unknown cause. Coronavirus RNA was quickly identified in some of these patients.This novel coronavirus has been designated SARS-CoV-2, and the disease caused by this virus has been designated COVID-19.Outbreak forecasting and mathematical modelling suggest that these numbers will continue to rise \[1\] in many countries over the coming weeks to months.Global efforts to evaluate novel antivirals and therapeutic strategies to treat COVID-19 have intensified. There is an urgent public health need for rapid development of novel interventions. At present, there is no specific antiviral therapy for coronavirus infections. Passive immunization:Passive immunization consists in the transfer of antibodies from immunized donor to non-immunized individual in order to transfer transient protection against an infective agent. A physiological example of passive immunization is the transfer of maternal IgG antibodies to the foetus through the placenta to confer humoral protection to newborns in the first years of life. Passive immunization differs from active immunization in which the patient develops their own immune response following contact with the infective agent or vaccine. Known potential risks and benefits: There is a theoretical risk of antibody-dependent enhancement of infection (ADE) through which virus targeted by non-neutralizing antibodies gain entry into macrophages. Another theoretical risk is that antibody administration to those exposed to SARS-CoV-2 may avoid disease but modify the immune response such that those individuals mount attenuated immune responses, which would leave them vulnerable to subsequent re-infection. Finally, there are risks associated with any transfusion of plasma including transmission of blood transmitted viruses (e.g. HIV, HBV, HCV, etc.), allergic transfusion reactions, including anaphylaxis, febrile non hemolytic transfusion reaction, transfusion related acute lung injury (TRALI), transfusion associated cardiac overload (TACO), and hemolysis should ABO incompatible plasma be administered. Potential benefits of COVID-19 convalescent plasma include improved survival, improvement in symptoms, decreased risk in intubation for mechanical ventilation, decrease risk of intensive care unit (ICU) admission, shortened hospitalization time and suppression of viral load. Mechanism of action: Transfusion of apheresis frozen plasma (AFP) from COVID-19 convalescent patients allows the transfer of donor neutralizing antibodies directed against SARS-CoV2 antigens to the recipient, thus allowing the generation of passive immunization. Naturally produced human antibody are polyclonal, meaning they are directed against a variety of different viral antigens and epitopes allowing for a general neutralizing effect against the virus rather than focussing on a specific target. Administration of convalescent plasma has been associated with rapid decrease in viral load. It is also possible that passive immunization contributes to improved cell-mediated immunity by favoring the phagocytosis and presentation of viral antigens to host T cells. Participant recruitment:Only hospitalized COVID-19 patients are eligible so recruitment efforts will be focused on identified consecutive patients admitted to hospital with acute COVID-19 infection. No other external recruitment efforts are planned. At each participating hospital, a process for identifying patients with COVID-19 will be established. Donor recruitment for Canadian sites: Recovered COVID-19 patients will be identified as potential donors in collaboration with provincial public health services, local health authorities, and individual co-investigators involved in the study. Potential donors may also be recruiting following self-identification on the routine donor questionnaire or through social media. They will be contacted by phone and invited to participate in the program as potential donors. After obtaining verbal consent and reviewing donor selection criteria, eligible participants will be directed to a Héma-Québec collection or Canadian Blood Services apheresis collection site in their area to donate. Criteria for donors: All donors will need to meet the criteria set forth in the Manual of donor selection criteria in use at Héma-Québec or Canadian Blood ServicesIn addition, donors will require: * Prior diagnosis of COVID-19 documented by a PCR test at time of infection or by positive anti-SARS-CoV-2 serology following infection * Male donors, or female donors with no pregnancy history or with negative anti-HLA antibodies * At least 6 days since last plasma donation * Provided informed consent * A complete resolution of symptoms at least 14 days prior to donation Donor recruitment for United States sites: Recovered COVID-19 patients are being recruited through the New York Blood Center and Weill Cornell Medicine in separate protocols. Potential donors can self-refer via websites but also be referred by physicians or identified via the medical record system. Only donors with laboratory-confirmed history of COVID-19 will be screened. After providing consent and reviewing FDA and NYBC donor eligibility criteria, donors are screened for the presences of SARS-CoV-2 virus in the nasopharynx if screening within 14 days of complete resolution in accordance with current FDA guidance. Criteria for donation are subject to change based on future revision of FDA guidance. Those found to be eligible will be referred to NYBC for donation. Criteria for donors: * Provision of informed consent * Aged 18 to 70 years. Donors are not longer eligible after their 71st birthday. * Documented molecular diagnosis of SARS-CoV-2 by RT-PCR by nasopharyngeal swab, oropharyngeal swab, or sputum or detection of anti-SARS-CoV-2 IgG in serum. * Complete resolution of COVID-19 symptoms at least 14 days prior to donation * Not currently pregnant or pregnant within 6 weeks by self-report * Male donors, or females with no pregnancy history or with negative anti-HLA antibodies * Meets blood donor criteria specified by NYBC, which is consistent with FDA regulations. Donors will be allowed to donate every 7 days. The following information will be collection from donors: ABO group, sex, age, date of onset of symptoms (when available), date of resolution of symptoms (when available), CCP collection date(s). Randomization procedures: Patients will be randomized in a 2:1 ratio (convalescent plasma vs standard of care). Patients will be randomized using a secure, concealed, computer-generated, web-accessed randomization sequence. Randomization will be stratified by centre and age (\<60 and ≥ 60 years). Within each stratum, variable permuted block sized will be used. This approach will ensure that concealment of the treatment sequence is maintained. Duration of follow-up: Subjects will be followed daily until hospital discharge or death. Patients discharged from hospital before Day 30 will be contacted by telephone on Day 30 ± 3 days to ascertain any AEs, vital status (dead/alive), hospital readmission and need for mechanical ventilation after discharge. Patients discharged from hospital will be contacted at Day 90+/- 7 days to determine vital status. Patients with a prolonged hospital admission will be censored at Day 90. The local study coordinator will collect all study data and record the data in the electronic CRF or paper CRF as per study procedures for each site. Duration of study: For an individual subject, the study ends 90 days after randomization. The overall study will end when the last randomized subject has completed 90 day follow-up. We estimate that all patient will be enrolled in a period of 6 months, data on the primary endpoint will be available 30 days after last patient enrollment and data on all secondary endpoints will be available after 90-day from last patient enrollment. Sample size considerations: Assuming a baseline risk of intubation or death of 30% in hospitalized patients with standard of care, a sample size of 1200 (800 in the convalescent plasma arm, and 400 in the standard of care arm) would provide 80% power to detect a relative risk reduction of 25% with convalescent plasma therapy using a 2-tailed test at level α = 0.05 and a 2:1 randomization. Interim analysis: A single interim analysis is planned when the primary outcome (intubation or mortality at 30 days) is available for 50% of the target sample. An O'Brien-Fleming stopping rule will be used at that time, but treated as a guideline, so there is minimal impact on the threshold for statistical significance for the final significance test of the primary outcome. A DSMB will monitor ongoing results to ensure patient well-being and safety as well as study integrity. The DSMB will be asked to recommend early termination or modification only when there is clear and substantial evidence of a treatment difference. Final analysis plan: The primary analysis will be based on the intention-to-treat population which will include data from all individuals who have been randomized. Outcomes will be attributed to the arm to which individuals were randomized irrespective of whether they received the planned intervention (e.g. plasma from a convalescent COVID-19 donor).
Interventions
Patients will receive 500 mL of convalescent plasma (from one single-donor unit of 500 mL or 2 units of 250 mL from 1-2 donations) collected by apheresis from donors who have recovered from COVID-19 and frozen (1 year expiration date from date of collection). The plasma unit will be thawed as per standard blood bank procedures and infused into the patient slowly over 4 hours. When administering 2 units of 250 mL, the 2nd unit will be administered after the first, and no longer than 12 hours later. The patient will be monitored for adverse events as per each site's policies.
Sponsors
Study design
Eligibility
Inclusion criteria
* ≥16 years old (\>18 years of age in the United States) * Admitted to hospital with confirmed COVID-19 respiratory illness * Receiving supplemental oxygen * 500 mL of ABO compatible convalescent plasma is available
Exclusion criteria
* Onset of respiratory symptoms \>12 days prior to randomization * Intubated or plan in place for intubation * Plasma is contraindicated (e.g. history of anaphylaxis from transfusion) * Decision in place for no active treatment
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Number of Participants Who Were Intubated or Died | Day 30 | Endpoint of the need for intubation or patient death |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Ventilator-free Days by Day 30 | Day 30 | Number of days off ventilator at 30 days |
| Death by Day 30 | Day 30 | Occurrence of patient death at 30 days |
| Length of Stay in Intensive Care Unit (ICU) | Day 30 | Number of days spent in the intensive care unit (ICU) over the 30-day period following randomization |
| Need for Renal Replacement Therapy | Day 30 | Need for new renal replacement therapy |
| Need for Extracorporeal Membrane Oxygenation (ECMO) | Day 30 | Requirement for extracorporeal membrane oxygenation (ECMO) |
| Development of Myocarditis | Day 30 | New diagnosis of myocarditis |
| In-hospital Death | Day 90 | Occurrence of death while in hospital, censored at 90 days. Patients who were still in hospital at Day 30 were followed until Day 90 to capture in-hospital mortality. |
| Time to Intubation or In-hospital Death | Day 30 | Time in days from randomization to occurrence of intubation or death |
| Length of Stay in Hospital | Day 90 | Number of days from randomization to death or hospital discharge. Patients still in hospital at Day 30 were followed until Day 90 to capture death or discharge from hospital. |
| Number of Participants With Grade 3 and 4 Serious Adverse Events | Day 30 | Number of participants with Grade 3 and 4 (CTCAE v4.0) serious adverse events, and cumulative incidence of Grade 3 and 4 serious adverse events (using MedDRA AE terms) |
| Number of Participants With CCP Transfusion-associated Adverse Events (AE) | Day 30 | Number of participants experiencing CCP transfusion-associated adverse events (AE), as defined by the International Society of Blood Tranfusion (ISBT ) classification |
| Number of Participants With Grade 3, 4, or 5 Serious Adverse Events | Day 30 | Number of Participants with Grade 3-5 (CTCAE v4.0) serious adverse events reported to Day 30 |
| Patient Reported Outcome Using Change in EQ-5D-5L Score | Baseline and Day 30 | Change in score on EQ-5D-5L instrument at Day 30 as compared to baseline. The EQ-5D-5L measures health-related quality of life in five dimensions, namely, mobility, self-care, usual activities, pain/discomfort, and anxiety/depression. Patients can report five level impairment, reflecting no, slight, moderate, severe, and extreme problems in each dimension. The range of possible values is -0.148 to 0.949, with a higher score reflecting a better outcome. For the change in score, a positive number indicates that the scores improved from baseline. |
| Patient Reported Outcome- Quality-adjusted Life Days | Day 30 | Quality-adjusted life days calculated using the EQ-5D-5L score. Quality-adjusted life days is a measure of how well a patient lives for how long. It combines the length of life and quality of life into one value. This is calculated by multiplying the health utility (derived from the EQ-5D-5L score) by the amount of time the patient is alive during the study period. A higher number is better. |
| Cost of Intervention and Hospital Stay | Day 30 | Cost per patient calculated using cost of the intervention and costs of the hospital stay |
| Time to In-hospital Death | Day 90 | Time to in-hospital death at 90 days. Patients who were still in hospital at Day 30 were followed until Day 90 to capture in-hospital mortality. |
Countries
Brazil, Canada, United States
Participant flow
Participants by arm
| Arm | Count |
|---|---|
| Convalescent Plasma \
500 mL ABO compatible convalescent apheresis plasma
Convalescent plasma: Patients will receive 500 mL of convalescent plasma (from one single-donor unit of 500 mL or 2 units of 250 mL from 1-2 donations) collected by apheresis from donors who have recovered from COVID-19 and frozen (1 year expiration date from date of collection). The plasma unit will be thawed as per standard blood bank procedures and infused into the patient slowly over 4 hours. When administering 2 units of 250 mL, the 2nd unit will be administered after the first, and no longer than 12 hours later. The patient will be monitored for adverse events as per each site's policies. | 625 |
| Standard of Care Treated as per institutional standard of care. | 313 |
| Total | 938 |
Withdrawals & dropouts
| Period | Reason | FG000 | FG001 |
|---|---|---|---|
| Overall Study | Lost to Follow-up | 11 | 6 |
| Overall Study | Withdrawal by Subject | 2 | 0 |
Baseline characteristics
| Characteristic | Total | Standard of Care | Convalescent Plasma |
|---|---|---|---|
| Abnormal CT chest or chest x-ray result before randomization | 829 Participants | 266 Participants | 563 Participants |
| ABO blood group A | 356 Participants | 121 Participants | 235 Participants |
| ABO blood group AB | 53 Participants | 22 Participants | 31 Participants |
| ABO blood group B | 146 Participants | 57 Participants | 89 Participants |
| ABO blood group O | 383 Participants | 113 Participants | 270 Participants |
| Age, Continuous | 67.5 years STANDARD_DEVIATION 15.6 | 67.1 years STANDARD_DEVIATION 14.8 | 67.7 years STANDARD_DEVIATION 16 |
| Age, Customized < 60 years | 282 Participants | 95 Participants | 187 Participants |
| Age, Customized >= 60 years | 656 Participants | 218 Participants | 438 Participants |
| Body Mass Index BMI < 30 kg/m^2 | 379 Participants | 123 Participants | 256 Participants |
| Body Mass Index BMI >= 30 kg/m^2 | 300 Participants | 102 Participants | 198 Participants |
| Body Mass Index BMI Unknown | 259 Participants | 88 Participants | 171 Participants |
| Body Mass Index | 30.0 kg/m^2 STANDARD_DEVIATION 7.4 | 30.0 kg/m^2 STANDARD_DEVIATION 7.4 | 30.0 kg/m^2 STANDARD_DEVIATION 7.5 |
| Enrolled in other clinical trials | 266 Participants | 98 Participants | 168 Participants |
| Fraction of inhaled oxygen (FiO2) at the time of randomization | 49.3 percentage of oxygen STANDARD_DEVIATION 25.2 | 48.8 percentage of oxygen STANDARD_DEVIATION 25.1 | 49.5 percentage of oxygen STANDARD_DEVIATION 25.2 |
| Location at time of randomization Intensive care unit | 173 Participants | 53 Participants | 120 Participants |
| Location at time of randomization Ward | 765 Participants | 260 Participants | 505 Participants |
| Medication for COVID-19 at baseline Anticoagulants | 535 Participants | 180 Participants | 355 Participants |
| Medication for COVID-19 at baseline Antiviral medications | 245 Participants | 80 Participants | 165 Participants |
| Medication for COVID-19 at baseline Azithromycin | 416 Participants | 137 Participants | 279 Participants |
| Medication for COVID-19 at baseline Other antibiotics | 591 Participants | 186 Participants | 405 Participants |
| Medication for COVID-19 at baseline Other COVID-19 medications | 118 Participants | 39 Participants | 79 Participants |
| Medication for COVID-19 at baseline Systemic corticosteroids | 754 Participants | 258 Participants | 496 Participants |
| Medication for other research study at baseline | 94 Participants | 41 Participants | 53 Participants |
| Medication not for COVID-19 at baseline Angiotensin-converting enzyme inhibitor | 148 Participants | 63 Participants | 85 Participants |
| Medication not for COVID-19 at baseline Angiotensin-converting enzyme receptor blocker | 124 Participants | 47 Participants | 77 Participants |
| Medication not for COVID-19 at baseline Anticoagulants | 199 Participants | 64 Participants | 135 Participants |
| Medication not for COVID-19 at baseline Colchicine | 7 Participants | 2 Participants | 5 Participants |
| Medication not for COVID-19 at baseline Immunomodulatory agents | 40 Participants | 18 Participants | 22 Participants |
| Medication not for COVID-19 at baseline Inhaled corticosteroids | 126 Participants | 42 Participants | 84 Participants |
| Medication not for COVID-19 at baseline Non-steroidal anti-inflammatory drugs | 129 Participants | 52 Participants | 77 Participants |
| Medication not for COVID-19 at baseline Systemic corticosteroids | 96 Participants | 35 Participants | 61 Participants |
| Pregnancy present at randomization | 5 Participants | 1 Participants | 4 Participants |
| Presence of comorbidity Baseline respiratory diseases | 226 Participants | 79 Participants | 147 Participants |
| Presence of comorbidity Cardiac disease | 582 Participants | 197 Participants | 385 Participants |
| Presence of comorbidity Diabetes | 328 Participants | 108 Participants | 220 Participants |
| Race/Ethnicity, Customized Asian | 150 Participants | 46 Participants | 104 Participants |
| Race/Ethnicity, Customized Black | 36 Participants | 11 Participants | 25 Participants |
| Race/Ethnicity, Customized Hispanic or Latino | 43 Participants | 9 Participants | 34 Participants |
| Race/Ethnicity, Customized Other | 66 Participants | 28 Participants | 38 Participants |
| Race/Ethnicity, Customized Unknown | 185 Participants | 66 Participants | 119 Participants |
| Race/Ethnicity, Customized White | 458 Participants | 153 Participants | 305 Participants |
| Region of Enrollment Brazil | 10 Participants | 3 Participants | 7 Participants |
| Region of Enrollment Canada | 794 Participants | 265 Participants | 529 Participants |
| Region of Enrollment United States | 134 Participants | 45 Participants | 89 Participants |
| Sex: Female, Male Female | 384 Participants | 128 Participants | 256 Participants |
| Sex: Female, Male Male | 554 Participants | 185 Participants | 369 Participants |
| Systemic corticosteroid at baseline | 766 Participants | 262 Participants | 504 Participants |
| Time from any symptom onset to randomization | 7.9 days STANDARD_DEVIATION 3.7 | 7.8 days STANDARD_DEVIATION 3.4 | 8.0 days STANDARD_DEVIATION 3.8 |
| Time from COVID-19 diagnosis to randomization | 5.0 days STANDARD_DEVIATION 3.9 | 5.1 days STANDARD_DEVIATION 4.4 | 4.9 days STANDARD_DEVIATION 3.6 |
Adverse events
| Event type | EG000 affected / at risk | EG001 affected / at risk |
|---|---|---|
| deaths Total, all-cause mortality | 160 / 625 | 70 / 313 |
| other Total, other adverse events | 110 / 614 | 35 / 307 |
| serious Total, serious adverse events | 205 / 614 | 81 / 307 |
Outcome results
Number of Participants Who Were Intubated or Died
Endpoint of the need for intubation or patient death
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | Number of Participants Who Were Intubated or Died | 199 Participants |
| Standard of Care | Number of Participants Who Were Intubated or Died | 86 Participants |
Cost of Intervention and Hospital Stay
Cost per patient calculated using cost of the intervention and costs of the hospital stay
Time frame: Day 30
Population: Patients with a completed baseline EQ-5D-5L AND either a completed EQ-5D-5L at Day 30 or who were dead at Day 30. The cost results will be combined with the quality-adjusted life day results to calculate the incremental cost per quality-adjusted life day, so the analysis population matches that of the quality-adjusted life day analysis.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Convalescent Plasma | Cost of Intervention and Hospital Stay | 23516.74 Canadian dollars | Standard Deviation 21373.8 |
| Standard of Care | Cost of Intervention and Hospital Stay | 20025.05 Canadian dollars | Standard Deviation 17957.57 |
Death by Day 30
Occurrence of patient death at 30 days
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | Death by Day 30 | 141 Participants |
| Standard of Care | Death by Day 30 | 63 Participants |
Development of Myocarditis
New diagnosis of myocarditis
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | Development of Myocarditis | 0 Participants |
| Standard of Care | Development of Myocarditis | 0 Participants |
In-hospital Death
Occurrence of death while in hospital, censored at 90 days. Patients who were still in hospital at Day 30 were followed until Day 90 to capture in-hospital mortality.
Time frame: Day 90
Population: Baseline study population- all randomized patients, excluding 2 who withdrew consent prior to the intervention
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | In-hospital Death | 156 Participants |
| Standard of Care | In-hospital Death | 69 Participants |
Length of Stay in Hospital
Number of days from randomization to death or hospital discharge. Patients still in hospital at Day 30 were followed until Day 90 to capture death or discharge from hospital.
Time frame: Day 90
Population: Baseline study population- all randomized patients, excluding 2 who withdrew consent prior to receiving the intervention
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Convalescent Plasma | Length of Stay in Hospital | 16.3 days | Standard Deviation 17.1 |
| Standard of Care | Length of Stay in Hospital | 14.8 days | Standard Deviation 16.3 |
Length of Stay in Intensive Care Unit (ICU)
Number of days spent in the intensive care unit (ICU) over the 30-day period following randomization
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Convalescent Plasma | Length of Stay in Intensive Care Unit (ICU) | 4.3 days | Standard Deviation 7.9 |
| Standard of Care | Length of Stay in Intensive Care Unit (ICU) | 3.7 days | Standard Deviation 7.1 |
Need for Extracorporeal Membrane Oxygenation (ECMO)
Requirement for extracorporeal membrane oxygenation (ECMO)
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | Need for Extracorporeal Membrane Oxygenation (ECMO) | 0 Participants |
| Standard of Care | Need for Extracorporeal Membrane Oxygenation (ECMO) | 1 Participants |
Need for Renal Replacement Therapy
Need for new renal replacement therapy
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available. Data from 11 patients on chronic kidney replacement therapy at baseline were not included in the Count of Participants since they were receiving renal replacement therapy prior to study entry and therefore do not meet our criteria for needing new renal replacement therapy during the study period.
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | Need for Renal Replacement Therapy | 10 Participants |
| Standard of Care | Need for Renal Replacement Therapy | 6 Participants |
Number of Participants With CCP Transfusion-associated Adverse Events (AE)
Number of participants experiencing CCP transfusion-associated adverse events (AE), as defined by the International Society of Blood Tranfusion (ISBT ) classification
Time frame: Day 30
Population: Only patients in the convalescent plasma (CCP) arm (intention to treat population) are assessed for CCP-related transfusion events, as these cannot occur in the standard of care arm.
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | Number of Participants With CCP Transfusion-associated Adverse Events (AE) | 35 Participants |
| Standard of Care | Number of Participants With CCP Transfusion-associated Adverse Events (AE) | 0 Participants |
Number of Participants With Grade 3, 4, or 5 Serious Adverse Events
Number of Participants with Grade 3-5 (CTCAE v4.0) serious adverse events reported to Day 30
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | Number of Participants With Grade 3, 4, or 5 Serious Adverse Events | 205 Participants |
| Standard of Care | Number of Participants With Grade 3, 4, or 5 Serious Adverse Events | 81 Participants |
Number of Participants With Grade 3 and 4 Serious Adverse Events
Number of participants with Grade 3 and 4 (CTCAE v4.0) serious adverse events, and cumulative incidence of Grade 3 and 4 serious adverse events (using MedDRA AE terms)
Time frame: Day 30
Population: Intention to treat population with data on the primary outcome available
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Convalescent Plasma | Number of Participants With Grade 3 and 4 Serious Adverse Events | 92 Participants |
| Standard of Care | Number of Participants With Grade 3 and 4 Serious Adverse Events | 30 Participants |
Patient Reported Outcome- Quality-adjusted Life Days
Quality-adjusted life days calculated using the EQ-5D-5L score. Quality-adjusted life days is a measure of how well a patient lives for how long. It combines the length of life and quality of life into one value. This is calculated by multiplying the health utility (derived from the EQ-5D-5L score) by the amount of time the patient is alive during the study period. A higher number is better.
Time frame: Day 30
Population: Patients with a completed baseline EQ-5D-5L AND either a completed EQ-5D-5L at Day 30 or who were dead at Day 30. Patients who did not have a completed baseline EQ-5D-5L were excluded from this population.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Convalescent Plasma | Patient Reported Outcome- Quality-adjusted Life Days | 17.959 quality adjusted life days | Standard Deviation 9.0363 |
| Standard of Care | Patient Reported Outcome- Quality-adjusted Life Days | 18.037 quality adjusted life days | Standard Deviation 8.9771 |
Patient Reported Outcome Using Change in EQ-5D-5L Score
Change in score on EQ-5D-5L instrument at Day 30 as compared to baseline. The EQ-5D-5L measures health-related quality of life in five dimensions, namely, mobility, self-care, usual activities, pain/discomfort, and anxiety/depression. Patients can report five level impairment, reflecting no, slight, moderate, severe, and extreme problems in each dimension. The range of possible values is -0.148 to 0.949, with a higher score reflecting a better outcome. For the change in score, a positive number indicates that the scores improved from baseline.
Time frame: Baseline and Day 30
Population: Patients with a complete EQ-5D-5L at both baseline AND Day 30. Patients who were unable to complete the EQ-5D-5L due to their health status or other reason are excluded from this population. Proper administration of the EQ-5D-5L requires the answers be obtained directly from the patient.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Convalescent Plasma | Patient Reported Outcome Using Change in EQ-5D-5L Score | 0.150 units on a scale | Standard Deviation 0.2588 |
| Standard of Care | Patient Reported Outcome Using Change in EQ-5D-5L Score | 0.157 units on a scale | Standard Deviation 0.2859 |
Time to In-hospital Death
Time to in-hospital death at 90 days. Patients who were still in hospital at Day 30 were followed until Day 90 to capture in-hospital mortality.
Time frame: Day 90
Population: Baseline study population (all randomized patients, excluding 2 who withdrew consent prior to the intervention)
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Convalescent Plasma | Time to In-hospital Death | 16.3 days | Standard Deviation 17.1 |
| Standard of Care | Time to In-hospital Death | 14.8 days | Standard Deviation 16.3 |
Time to Intubation or In-hospital Death
Time in days from randomization to occurrence of intubation or death
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Convalescent Plasma | Time to Intubation or In-hospital Death | 22.8 days | Standard Deviation 11 |
| Standard of Care | Time to Intubation or In-hospital Death | 23.4 days | Standard Deviation 11 |
Ventilator-free Days by Day 30
Number of days off ventilator at 30 days
Time frame: Day 30
Population: Intention to treat population with data on primary outcome available
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Convalescent Plasma | Ventilator-free Days by Day 30 | 23.4 days | Standard Deviation 10.4 |
| Standard of Care | Ventilator-free Days by Day 30 | 24.0 days | Standard Deviation 10.5 |