This is a randomized, prospective, multicenter, open label clinical trial of convalescent plasma compared to best supportive care for treatment of patients with severe COVID-19. The aim of the study is to explore the therapeutic effect of convalescent plasma transfusions on the survival and course of disease of patients with severe COVID-19. Convalescent plasma will be collected from recovered COVID-19 patients. Patients with severe COVID-19 will be randomly assigned to two groups. Patients in the treatment group will receive covalescent plasma (250 - 325 ml) on days 1, 3 and 5. Patients in the control group will receive best supportive care. Clinical condition in all patients will be evaluated on day 14. In case of progressive COVID-19 on day 14 compared to baseline, patients in the control group may be switched to treatment with convalescent plasma on days 15, 17 and 19. Fifty-three patients will be included in each group. Data of each patient will be collected until discharge but nor longer than day 60.
This is a randomized, prospective, multicentre, open label clinical trial of convalescent plasma compared to best supportive care for treatment of patients with severe COVID-19. The primary Endpoint is a dichotomous composite endpoint of survival and no longer fulfilling criteria of severe COVID-19 within 21 days after randomization. All criteria must be met in order to fulfil the primary endpoint. Key secondary endpoints are time to clinical improvement (defined as time from randomization to an improvement of two points on the WHO R\&D Blueprint seven-category ordinal scale for clinical improvement), the frequency and severity of adverse events and the case fatality rate on day 21, 35 and 60. Further secondary endpoints refer to the course of anti-SARS-CoV-2 antibodies in plasma donors and treated patients and the impact of donor criteria on the effectiveness of plasma units. Patients with severe COVID-19 defined by a respiratory rate ≥ 30 breaths / minute under ambient air or the requirement of any type of ventilation support or the need for ICU treatment can be included in the trial. It is planned to enrol 106 patients. Patients will be stratified according to ventilation support and/or extracorporeal oxygenation and/or ICU treatment and will be equally asigned to two groups. The treatment group receives convalescent plasma (250 - 325 ml) on day 1, 3 and 5 and the control group will receive best supportive care. Clinical condition in all patients will be evaluated on day 14. In case of progressive COVID-19 on day 14 compared to baseline (i.e. day 0), patients in the control group may be switched to treatment with convalescent plasma on days 15, 17 and 19. A patient switching from the control group to convalescent plasma group because of progressive COVID-19 on day 14 will be considered as failure of the primary endpoint at final evaluation of the primary endpoint on day 21.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
106
Transfusion
University Hospital Ulm
Ulm, Baden-Württmberg, Germany
University Hopsital Frankfurt
Frankfurt, Hessia, Germany
Saarland University Hospital
Homburg, Saarland, Germany
University Hospital Berlin, Charite
Berlin, Germany
Universitiy Hospital Dresden
Dresden, Germany
University Düsseldorf
Düsseldorf, Germany
University Hospital Freiburg
Freiburg im Breisgau, Germany
University Hospital Gießen
Giessen, Germany
University Hopsital Greifswald
Greifswald, Germany
Städtisches Klinikum Karslruhe
Karlsruhe, Germany
...and 6 more locations
Composite endpoint of survival and no longer fulfilling criteria of severe COVID-19.
Dichotomous composite endpoint of survival and no longer fulfilling criteria of severe COVID-19. All criteria must be met in order to fulfil the primary endpoint.
Time frame: Day 21
Time to clinical improvement
Time to clinical improvement (defined as days from randomization to an improvement of two points on the WHO R\&D Blueprint seven-category ordinal scale for clinical improvement) (Key secondary endpoint)
Time frame: day 0 to discharge within a 60 day period
Frequency and severity of adverse events by CTCAE v5.0, (Key secondary endpoint)
Time frame: day 0 to discharge within a 60 day period
Case fatality rate
Time frame: on day 21, 35 and 60
Length of hospital stay Length of hospital stay (if applicable)
Time frame: day 0 to 60
Length of stay in ICU
Time frame: day 0 to 60
Duration of ventilation support / ECMO
Time frame: day 0 to 60
Time until negative SARS-CoV-2 PCR (nasopharyngeal sample)
time to first negative PCR will be assessed
Time frame: day 0 to 60
Predictive value of comorbidities
Comorbidities will be assessed and correlated to clinical improvement (WHO scale), mortality, length of stay in ICU (days) and length of hospital stay (days)
Time frame: day 0 to 60
Predictive value of coagulation markers
Correlation of coagulation markers (D-Dimers, prothrombin time, Partial Thromboplastin Time, ATIII, Fibrinogen) with clinical improvement (WHO scale), mortality, length of stay in ICU (days) and length of hospital stay (days)
Time frame: day 0 to 60
Predictive value of inflamation
Corelation of Inflammation (laboratory testing: CRP, IL-6, Ferritin, Blood cell Count) with clinical improvement (WHO scale), mortality, length of stay in ICU (days) and length of hospital stay (days)
Time frame: day 0 to 60
Percentage of former COVID-19 patients willing to donate qualifying for plasma donation.
Time frame: through study completion, an average of 8 months
Amount of Plasma Units that could be collected for the clinical trial
Time frame: through study completion, an average of 8 months
Titer of anti-SARS-CoV-2 in transfused plasma units
Time frame: any plasmaphereseis, through study completion, an average of 8 months
Impact of donor characteristics on anti-SARS-CoV-2 humoral response
Anti-SARS-CoV-2-antibody titers will be correlated with age; gender; severity of COVID-19; interval between resolution of symptoms and plasmapheresis of plasma donors
Time frame: up to 60 days
Course of anti-SARS-CoV-2 titer in both patient groups at different time points related to transfusion of convalescent plasma
Neutralizing anti-SARS-CoV-2 titers were measured by PRNT
Time frame: up to 60 days
Correlation of anti-SARS-CoV-2 titer in transfused plasma units and primary and key secondary outcomes.
Correlation of antibody titers with: 1. "Survival and no longer fulfilling criteria of severe COVID-19"; 2. Change in WHO ordinal scale; 3. Time to clinical improvement; 4. Length of hospital stay; 5. Length of ICU stay; 6. Length of mechanical Ventilation or ECMO support.
Time frame: day 0 to 60
Effect of timing of plasma transfusions
Effect of timing of plasma transfusions on outcome: comparison of early treatment, i.e. day 1, 3 and 5 in convalescent plasma group vs. delayed treatment, i.e. day 15, 17, 19 in patients crossing over from control group due to progressive disease on day-14 assessment.
Time frame: day 0 to 60
Long term survival
Long term survival up to 15 months after randomisation (patients in CCP group\* compared to control group) or first plasma donation (CCP donors). And high-titer group versus low -titer group versus control.
Time frame: 15 month
Frequency of long COVID-19
Frequency of long COVID-19\* up to 15 months after randomisation (patients in CCP group\* compared to control group) or first plasma donation (CCP donors).And high-titer group versus low -titer group versus control.
Time frame: 15 month
Resolution of pneumonia and functional recovery
Resolution of pneumonia and functional recovery\* in patients (CCP group compared to control group and donors). Assessment will be done by CTCAE 5.0 and structured interview. And high-titer group versus low -titer group versus control.
Time frame: 15 month
Patient Reported Outcome: FACIT Fatigue Score
FACIT Fatigue Score: 0-53 : The higher the score, the better the quality of life Comparisons between patients CCP group compared to control group and donors and high-titer group versus low -titer group versus control group.
Time frame: 15 month
Patient Reported Outcome: FACIT Dyspnea Score
FACIT Dyspnea Score 1 and 2: 0-30 : The lhigher the score the worse is the dypnea Comparisons between patients CCP group compared to control group and donors and high-titer group versus low -titer group versus control group.
Time frame: 15 month
Patient Reported Outcome: EQ-5D-5L visual Scale
EQ-5D-5L visual scale: 0-100, The lower the socre, the worse is the health state Comparisons between patients CCP group compared to control group and donors and high-titer group versus low -titer group versus control group.
Time frame: 15 month
Patient Reported Outcome:EQ-5D-5L cross walk
EQ-5D-5L cross walk score: 0-1.0 The lower the socre, the worse is the health state Comparisons between patients CCP group compared to control group and donors and high-titer group versus low -titer group versus control group.
Time frame: 15 month
Laboratory markers: D-Dimers
D-Dimers will be correlated with the Levels of SARS-CoV-2 antodies as a measure of anti-SARS-CoV-2 immunity and compared between the patient groups (in patients: CCP group compared to control group and donors). The effect of SARS-CoV-2 vaccination\* in control group, CCP group and CCP donors will also be taken into account.Measures will also be compeared between high-titer group versus low -titer group versus control group.
Time frame: 15 month
Laboratory markers: Fibrinogen
Fibronogen will be correlated with the Levels of SARS-CoV-2 antodies as a measure of anti-SARS-CoV-2 immunity and compared between the patient groups (in patients: CCP group compared to control group and donors). The effect of SARS-CoV-2 vaccination\* in control group, CCP group and CCP donors will also be taken into account.Measures will also be compeared between high-titer group versus low -titer group versus control group.
Time frame: 15 month
Laboratory markers: CRP
CRP will be correlated with the Levels of SARS-CoV-2 antodies as a measure of anti-SARS-CoV-2 immunity and compared between the patient groups (in patients: CCP group compared to control group and donors). The effect of SARS-CoV-2 vaccination\* in control group, CCP group and CCP donors will also be taken into account.Measures will also be compeared between high-titer group versus low -titer group versus control group.
Time frame: 15 month
Laboratory markers: Ferritin
Ferritin will be correlated with the Levels of SARS-CoV-2 antodies as a measure of anti-SARS-CoV-2 immunity and compared between the patient groups (in patients: CCP group compared to control group and donors). The effect of SARS-CoV-2 vaccination\* in control group, CCP group and CCP donors will also be taken into account.Measures will also be compeared between high-titer group versus low -titer group versus control group.
Time frame: 15 month
Laboratory markers: IL-6
IL-6 will be correlated with the Levels of SARS-CoV-2 antodies as a measure of anti-SARS-CoV-2 immunity and compared between the patient groups (in patients: CCP group compared to control group and donors). The effect of SARS-CoV-2 vaccination\* in control group, CCP group and CCP donors will also be taken into account.Measures will also be compeared between high-titer group versus low -titer group versus control group.
Time frame: 15 month
Severity of long COVID-19
Severity of long COVID-19\* up to 15 months after randomisation (patients in CCP group\* compared to control group) or first plasma donation (CCP donors). Grading according Post-COVID-19 Scale from 0 (no functional limitations) to 4 (severe functional limitations). Measures will also be compeared between high-titer group versus low -titer group versus control group.
Time frame: 15 month
Duration of long COVID-19
Duration of long COVID-19\* up to 15 months after randomisation (patients in CCP group\* compared to control group) or first plasma donation (CCP donors). Measures will also be compeared between high-titer group versus low -titer group versus control group.
Time frame: 15 month
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