Impact of pathogen reduction methods on immunological properties of the COVID-19 convalescent plasma.

Mikhail A Godkov, Sergey S Petrikov, Nataliya E Drozdova, Stanislav E Volkov, Eugene A Dombrovskiy, Vladimir V Ganchin, Alina R Kamalova, Alina S Bogdanova, Valeriy V Shustov, Alexey I Bazhenov, Alexander I Kostin, Natalia V Borovkova, Dmitry V Shcheblyakov, Inna V Dolzhikova, Denis Y Logunov, Alexander L Gintsburg, Karina S Chirkova, Elena A Ladygina, Andrey Y Bulanov, Maria N Lundgren

Journal: Vox sanguinis 2021;116(6):665-672

PMID: 33734455

Abstract

BACKGROUND AND OBJECTIVES

COVID-19 convalescent plasma is an experimental treatment against SARS-CoV-2. The aim of this study is to assess the impact of different pathogen reduction methods on the levels and virus neutralizing activity of the specific antibodies against SARS-CoV2 in convalescent plasma.

MATERIALS AND METHODS

A total of 140 plasma doses collected by plasmapheresis from COVID-19 convalescent donors were subjected to pathogen reduction by three methods: methylene blue (M)/visible light, riboflavin (R)/UVB and amotosalen (A)/UVA. To conduct a paired comparison, individual plasma doses were divided into 2 samples that were subjected to one of these methods. The titres of SARS-CoV2 neutralizing antibodies (NtAbs) and levels of specific immunoglobulins to RBD, S- and N-proteins of SARS-CoV-2 were measured before and after pathogen reduction.

RESULTS

The methods reduced NtAbs titres differently: among units with the initial titre 80 or above, 81% of units remained unchanged and 19% decreased by one step after methylene blue; 60% were unchanged and 40% decreased by one step after amotosalen; after riboflavin 43% were unchanged and 50% (7%, respectively) had a one-step (two-step, respectively) decrease. Paired two-sample comparisons (M vs. A, M vs. R and A vs. R) revealed that the largest statistically significant decrease in quantity and activity of the specific antibodies resulted from the riboflavin treatment.

CONCLUSION

Pathogen reduction with methylene blue or with amotosalen provides the greater likelihood of preserving the immunological properties of the COVID-19 convalescent plasma compared to riboflavin.

© 2021 International Society of Blood Transfusion.

Address: Moscow Department of Healthcare, N.V. Sklifosovsky Research Institute of Emergency Medicine, Moscow, Russia.; Department of Clinical Immunology and Transfusion Medicine, Office of Medical Services, Lund, Sweden.; The Federal State Budgetary Institution 'National Research Center of Epidemiology and Microbiology N.F. Gamaleya' of the Ministry of Health of the Russian Federation, Moscow, Russia.; Healthcare Ministry of Russia, N.I. Pirogov Federal Russian National Research Medical University, Moscow, Russia.; Autonomous Non-Commercial Organization «Center of Analytical Development of the Social Sector», Moscow, Russia.; Centre for Mathematical Sciences, Lund University, Lund, Sweden.
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