Plasma, the supernatant part of blood, contains a variety of different proteins, including immunoglobulins. These proteins, also called antibodies, are directed to previous foreign infecting organisms, such as virus, bacteria or parasites. Patients recovering from SARS-Cov-2 infection may develop protective antibodies which can prevent reinfection with the same agent or similar organisms with shared molecular structures. Those antibodies may be transferred to other patients through collection of such convalescent plasma from recovered donors and its transfusion to ill patients. In this research, the primary hypothesis is that those antibodies can exert passive immunization and help ameliorate symptoms from COVID-19 (Coronavirus Disease 2019), resulting in higher clinical improvement rates at day 28, especially when administered early in the infection course.
This is a randomized, open-label, phase 3 clinical trial on the use of convalescent plasma for severe COVID-19 patients. In this research, we are going to assess efficacy and safety of convalescent plasma in the treatment of severely compromised COVID-19 patients. Convalescent plasma will be collected from recovered COVID-19 patients, who will be recruited as plasma donors and will be submitted to apheresis (with minimum interval of 14 days) to obtain two aliquots of 300 ml of convalescent plasma, which will be frozen at -80 and stored at -20 to -30 degrees Celsius. Enrolled patients will be randomized based on a concealed sequential allocation list by an independent researcher which will not be aware of patients characteristics, and stratified by COVID-19 severity (severe or life-threatening). There will be two arms of study, intervention or control group, and patients will be followed up for the next 28 days for clinical and laboratory outcomes such as improvement of disease status (measured by a 6-point ordinal severity scale); mechanical ventilation, intensive care unit (ICU) and total hospital stay period; cytokine levels (IL-6 and TNF-alfa) and several inflammatory, cellular injury and coagulation parameters. Intervention was conceived as two infusions of 300 ml of convalescent plasma, 2 days apart. Control group will receive full supportive treatment but will not be allowed to receive other investigational drugs. Sample size was calculated to a total of 160 patients, with a 1:1 randomization proportion between groups. This amount would be capable to detect an 18% or higher difference in the proportion of clinical improvement at 28 days of enrollment between intervention and control groups, with an alfa error of 0.05 and a statistical power of 0.8.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
160
Fresh frozen plasma collected by apheresis from recovered COVID-19 patients added to best supportive care.
Any form of ventilatory support, extracorporeal membrane oxygenation, steroids, antibiotics and other supportive measures except for investigational interventions.
Hospital de Clínicas de Porto Alegre
Porto Alegre, Rio Grande do Sul, Brazil
Clinical improvement
Improvement of 2 points from randomization in a 6-point ordinal severity scale (6 points, death; 5 points, hospitalization plus extracorporeal membrane oxygenation (ECMO) or invasive mechanical ventilation; 4 points, hospitalization plus noninvasive ventilation or high-flow supplemental oxygen; 3 points, hospitalization plus supplemental oxygen (not high-flow or noninvasive ventilation); 2 points, hospitalization with no supplemental oxygen; 1 point, hospital discharge)
Time frame: 28 days
6-point ordinal scale proportion at 14 days
Proportions of individuals classified in each 6-point ordinal scale strata
Time frame: 14 days from randomization
6-point ordinal scale proportion at 28 days
Proportions of individuals classified in each 6-point ordinal scale strata
Time frame: 28 days from randomization
Overall mortality
Death from any cause after randomization
Time frame: 14 days
Overall mortality
Death from any cause after randomization
Time frame: 28 days
Days alive and free of respiratory support (DAFOR28)
Days free of respiratory support during follow up
Time frame: 28 days
Mechanical ventilation
Duration of invasive ventilatory support (for those who received mechanical ventilation)
Time frame: 28 days
PaO2/FiO2 ratio
PaO2/FiO2 ratio at 7 days of follow up
Time frame: At the 7th day of randomization
Hospital stay
Time from randomization to hospital discharge (for 28-day survivors)
Time frame: 28 days
Lactate Dehydrogenase
LDH (U/L)
Time frame: Randomization day, Day 3, Day 7 and Day 14
Troponin I
Troponin I (pg/mL)
Time frame: Randomization day, Day 3, Day 7 and Day 14
C Reactive Protein
CRP (mg/L)
Time frame: Randomization day, Day 3, Day 7 and Day 14
D-Dimers
D-Dimers (mcg/mL)
Time frame: Randomization day, Day 3, Day 7 and Day 14
Fibrinogen
Fibrinogen (mg/dL)
Time frame: Randomization day, Day 3, Day 7 and Day 14
Prothrombin Time (PT)
PT (seconds)
Time frame: Randomization day, Day 3, Day 7 and Day 14
Activated Partial Thromboplastin Time (APTT)
APTT (seconds)
Time frame: Randomization day, Day 3, Day 7 and Day 14
Tumor Necrosis Factor Alfa (TNF-Alfa)
TNF-Alfa (pg/mL)
Time frame: Randomization day, Day 3, Day 7 and Day 14
Interleukin-6 (IL-6)
IL-6 (pg/mL)
Time frame: Randomization day, Day 3, Day 7 and Day 14
RT-PCR
Nasal and Oropharyngeal Swab RT-PCR
Time frame: At the 7th day of randomization (or at hospital discharge if earlier than 7 days)
Sequential Organ Failure Assessment (SOFA) score
SOFA score at 7 days of randomization (ranges from 0 to 24, prognosis worsens with higher score values)
Time frame: At the 7th day of randomization
National Early Warning Score 2 (NEWS) 2
Change in NEWS 2 from randomization at 7 days and 14 days (ranges from 0 to 20, prognosis worsens with higher score values)
Time frame: 7 and 14 days of randomization
Safety and Adverse Events
CTCAE grade 3-4 events during follow up
Time frame: 28 days
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