European Black Elderberry Fruit Extract Inhibits Replication of SARS-CoV-2 In Vitro

Author:

Setz Christian,Fröba Maria,Große Maximilian,Rauch Pia,Auth Janina,Steinkasserer Alexander,Plattner StephanORCID,Schubert Ulrich

Abstract

Coronavirus disease-19 (COVID-19) is still affecting the lives of people round the globe and remains a major public health threat. The emergence of new variants more efficiently transmitted, more virulent and more capable of escaping naturally acquired and vaccine-induced immunity creates a long-term negative outlook for the management of the pandemic. The development of effective and viable prevention and treatment options to reduce viral transmission is of the utmost importance. The fruits of the European black elderberry and extracts thereof have been traditionally used to treat viral infections such as coughs, cold and flu. Specifically, its efficacy against the Influenza A virus has been shown in vitro as well as in human clinical trials. In the current project, we investigated the antiviral activity of a black elderberry extract, mainly containing anthocyanins and phenolic compounds, against SARS-CoV-2 and its variants of concern and explored the possible mode of action by performing time of addition experiments. The results revealed that the extract displayed a strong anti-SARS-CoV-2 activity against the Wuhan type as well as the variants of concern Alpha, Beta, Gamma, Delta and Omicron with a comparable antiviral activity. Based on cytotoxicity data, a 2-log theoretical therapeutic window was established. The data accumulated so far suggest that the viral replication cycle is inhibited at later stages, inasmuch as the replication process was affected after virus entry. Therefore, it would be legitimate to assume that black elderberry extract might have the potential to be an effective treatment option for SARS-CoV-2 infections.

Funder

Deutsche Forschungsgemeinschaft

Interdisciplinary Center for Clinical Research (IZKF) at the University Hospital of the University of Erlangen-Nuremberg

Autonomous Province of Bozen/Bolzano

Publisher

MDPI AG

Reference71 articles.

1. Medicine, J.H.U. (2022, December 08). COVID-19 Dashboard by the Center for Systems Science and Engineering (CSSE) at Johns Hopkins University. Available online: https://coronavirus.jhu.edu/map.html.

2. Sensitivity of SARS-CoV-2 B.1.1.7 to mRNA vaccine-elicited antibodies;Collier;Nature,2021

3. SARS-CoV-2 501Y.V2 escapes neutralization by South African COVID-19 donor plasma;Wibmer;Nat. Med.,2021

4. Tracking Changes in SARS-CoV-2 Spike: Evidence that D614G Increases Infectivity of the COVID-19 Virus;Korber;Cell,2020

5. Emergence of SARS-CoV-2 B.1.1.7 Lineage—United States, December 29, 2020–January 12, 2021;Galloway;MMWR Morb. Mortal. Wkly. Rep.,2021

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