This is an open-label, single-center, phase I study to assess the safety and efficacy of convalescent plasma therapy (CPT) obtained from donors who were tested positive for SARS-CoV-2 and fully recovered from the infection and administered to patients who are infected with the new coronavirus and present dyspnea or a poor prognosis
The outbreak of a new highly contagious and life-threatening infective disease was first reported in China in December 2019. Regardless of the undertaken containing measures, its spreading could not be effectively stopped and currently we are confronting the pandemic diffusion of a newly identified Coronavirus (SARS-CoV-2) (1). This causes a systemic disease, known as (Coronavirus Disease-19) COVID-19, characterised by a broad spectrum of clinical manifestations, including ineffective hyper-inflammation and severe pneumonia, with provisional epidemiologic data indicating a mortality rate of 0.1-15% (2). Do to the lack of vaccination, specific anti-virus sera or monoclonal antibodies, the therapeutic efforts to limit COVID-19 mostly rely on the empirical use of anti-viral drugs. Therefore, being the option of an active immunisation not available and because of the controversial efficacy of the available anti-viral therapies (3), we suggest the option of a passive immunisation for those patients who are infected with the new coronavirus and present dyspnea or a poor prognosis. The use of convalescent plasma, i.e. plasma obtained from donors who were tested positive for SARS-CoV-2 and fully recovered from the infection, could provide a rapid protection, limiting the observed evolution of COVID-19 towards life-threating manifestations (7-9). When carried on according to standardised measures, the transfusion of plasma is highly safe (10-11) and we assume that products containing anti- SARS-CoV- 2 antibodies will provide the recipients a passive immunity through different mechanisms, including viral neutralisation, antibody-dependent cellular cytotoxicity and/or phagocytosis.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
30
Convalescent plasma will be delivered as FFP. Three units of 200ml CP/FFP harvested from one donor will be transfused to one recipient, i.e. there will be a match between donor and recipient and each recipient will receive CP/FFP only from one donor. CP/FFP will be administered intravenously at the infusion rate of 100ml/hour, starting from day 0, with a new transfusion every 24 hours, for a total of 3 transfusions (see scheme).
University Hospital Zurich
Zurich, Switzerland
Safety of CPT applied to COVID-19 patients
Absence of clinical signs of Transfusion Related Lung Inflammation (TRALI) and/or allergic reactions and/or Transfusion Associated Circulatory Overload (TACO)
Time frame: clinical observation up to 48 hours after the last dose of plasma
Safety of CPT applied to COVID-19 patients
Absence of laboratory signs of haemolytic reactions
Time frame: 1 week (laboratory monitoring up to 7 days after the last administration of plasma)
Improvement of respiratory frequency
Respiratory frequency will be measured at each study visit
Time frame: 3 weeks after the last administration of plasma
Improvement of O2-saturation
O2-Saturation will be measured at each study visit
Time frame: 3 weeks after the last administration of plasma
Improvement of Inflammatory markers (C Reactive Protein, CRP)
CRP will be measured at each study visit
Time frame: 3 weeks after the last administration of plasma
Improvement of Inflammatory markers (Ferritin)
Ferritin will be measured at each study visit
Time frame: 3 weeks after the last administration of plasma
Improvement of Inflammatory markers (IL-6)
IL-6 will be measured at each study visit
Time frame: 3 weeks after the last administration of plasma
Improvement of coagulation-markers (D-dimer)
D-Dimer will be measured at each study visit
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Time frame: 3 weeks after the last administration of plasma
Improvement of coagulation-markers (Fibrinogen)
Fibrinogen will be measured at each study visit
Time frame: 3 weeks after the last administration of plasma
Improvement of coagulation-markers (LDH)
LDH will be measured at each study visit
Time frame: 3 weeks after the last administration of plasma
Prevention of ICU-admission
clinical conditions will be assessed throughout the study
Time frame: 3 weeks after the last administration of plasma
Characterisation of virus reaction to plasma Therapy
Measurement of viral load after plasma therapy
Time frame: 10 Weeks
Characterisation of the dynamic of humoral response after therapy
Measurement of antibody-titres after plasma therapy
Time frame: 10 Weeks
Better characterize the the in-vivo anti-virus humoral response against SARS-CoV-2.
Performance of neutralisation assay after administration of plasma
Time frame: 10 Weeks