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Immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost COVID-19 vaccine Sputnik V in mice and non-human primates

Although unprecedented efforts aiming to stop the COVID-19 pandemic have been made over the past two years, SARSCoV-2 virus still continues to cause intolerable health and economical losses. Vaccines are considered the most effective way to prevent infectious diseases, which has been reaffirmed for...

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Autores principales: Tukhvatulin, Amir I., Gordeychuk, Ilya V., Dolzhikova, Inna V., Dzharullaeva, Alina S., Krasina, Marina E., Bayurova, Ekaterina O., Grousova, Daria M., Kovyrshina, Anna V., Kondrashova, Alla S., Avdoshina, Daria V., Gulyaev, Stanislav A., Gulyaeva, Tatiana V., Moroz, Andrey V., Illarionova, Viktoria V., Zorkov, Ilya D., Iliukhina, Anna A., Shelkov, Artem Y., Botikov, Andrei G., Erokhova, Alina S., Shcheblyakov, Dmitry V., Esmagambetov, Ilias B., Zubkova, Olga V., Tokarskaya, Elisaveta A., Savina, Daria M., Vereveyko, Yulia R., Ungur, Anastasiya S., Naroditsky, Boris S., Ishmukhametov, Aydar A., Logunov, Denis Y., Gintsburg, Alexander L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9518644/
https://www.ncbi.nlm.nih.gov/pubmed/36031930
http://dx.doi.org/10.1080/22221751.2022.2119169
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author Tukhvatulin, Amir I.
Gordeychuk, Ilya V.
Dolzhikova, Inna V.
Dzharullaeva, Alina S.
Krasina, Marina E.
Bayurova, Ekaterina O.
Grousova, Daria M.
Kovyrshina, Anna V.
Kondrashova, Alla S.
Avdoshina, Daria V.
Gulyaev, Stanislav A.
Gulyaeva, Tatiana V.
Moroz, Andrey V.
Illarionova, Viktoria V.
Zorkov, Ilya D.
Iliukhina, Anna A.
Shelkov, Artem Y.
Botikov, Andrei G.
Erokhova, Alina S.
Shcheblyakov, Dmitry V.
Esmagambetov, Ilias B.
Zubkova, Olga V.
Tokarskaya, Elisaveta A.
Savina, Daria M.
Vereveyko, Yulia R.
Ungur, Anastasiya S.
Naroditsky, Boris S.
Ishmukhametov, Aydar A.
Logunov, Denis Y.
Gintsburg, Alexander L.
author_facet Tukhvatulin, Amir I.
Gordeychuk, Ilya V.
Dolzhikova, Inna V.
Dzharullaeva, Alina S.
Krasina, Marina E.
Bayurova, Ekaterina O.
Grousova, Daria M.
Kovyrshina, Anna V.
Kondrashova, Alla S.
Avdoshina, Daria V.
Gulyaev, Stanislav A.
Gulyaeva, Tatiana V.
Moroz, Andrey V.
Illarionova, Viktoria V.
Zorkov, Ilya D.
Iliukhina, Anna A.
Shelkov, Artem Y.
Botikov, Andrei G.
Erokhova, Alina S.
Shcheblyakov, Dmitry V.
Esmagambetov, Ilias B.
Zubkova, Olga V.
Tokarskaya, Elisaveta A.
Savina, Daria M.
Vereveyko, Yulia R.
Ungur, Anastasiya S.
Naroditsky, Boris S.
Ishmukhametov, Aydar A.
Logunov, Denis Y.
Gintsburg, Alexander L.
author_sort Tukhvatulin, Amir I.
collection PubMed
description Although unprecedented efforts aiming to stop the COVID-19 pandemic have been made over the past two years, SARSCoV-2 virus still continues to cause intolerable health and economical losses. Vaccines are considered the most effective way to prevent infectious diseases, which has been reaffirmed for COVID-19. However, in the context of the continuing virus spread because of insufficient vaccination coverage and emergence of new variants of concern, there is a high demand for vaccination strategy amendment. The ability to elicit protective immunity at the entry gates of infection provided by mucosal vaccination is key to block virus infection and transmission. Therefore, these mucosal vaccines are believed to be a “silver bullet” that could bring the pandemic to an end. Here, we demonstrate that the intranasally delivered Gam-COVID-Vac (Sputnik V) vaccine induced a robust (no less than 180 days) systemic and local immune response in mice. High immunogenic properties of the vaccine were verified in non-human primates (common marmosets) by marked IgG and neutralizing antibody (NtAb) production in blood serum, antigen-specific Tcell proliferation and cytokine release of peripheral blood mononuclear cells accompanied by formation of IgA antibodies in the nasal mucosa. We also demonstrate that Sputnik V vaccine can provide sterilizing immunity in K18-hACE2 transgenic mice exposed to experimental lethal SARS-CoV-2 infection protecting them against severe lung immunopathology and mortality. We believe that intranasal Sputnik V vaccine is a promising novel needle-free mucosal vaccine candidate for primary immunization as well as for revaccination and is worth further clinical investigation.
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spelling pubmed-95186442022-09-29 Immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost COVID-19 vaccine Sputnik V in mice and non-human primates Tukhvatulin, Amir I. Gordeychuk, Ilya V. Dolzhikova, Inna V. Dzharullaeva, Alina S. Krasina, Marina E. Bayurova, Ekaterina O. Grousova, Daria M. Kovyrshina, Anna V. Kondrashova, Alla S. Avdoshina, Daria V. Gulyaev, Stanislav A. Gulyaeva, Tatiana V. Moroz, Andrey V. Illarionova, Viktoria V. Zorkov, Ilya D. Iliukhina, Anna A. Shelkov, Artem Y. Botikov, Andrei G. Erokhova, Alina S. Shcheblyakov, Dmitry V. Esmagambetov, Ilias B. Zubkova, Olga V. Tokarskaya, Elisaveta A. Savina, Daria M. Vereveyko, Yulia R. Ungur, Anastasiya S. Naroditsky, Boris S. Ishmukhametov, Aydar A. Logunov, Denis Y. Gintsburg, Alexander L. Emerg Microbes Infect Coronaviruses Although unprecedented efforts aiming to stop the COVID-19 pandemic have been made over the past two years, SARSCoV-2 virus still continues to cause intolerable health and economical losses. Vaccines are considered the most effective way to prevent infectious diseases, which has been reaffirmed for COVID-19. However, in the context of the continuing virus spread because of insufficient vaccination coverage and emergence of new variants of concern, there is a high demand for vaccination strategy amendment. The ability to elicit protective immunity at the entry gates of infection provided by mucosal vaccination is key to block virus infection and transmission. Therefore, these mucosal vaccines are believed to be a “silver bullet” that could bring the pandemic to an end. Here, we demonstrate that the intranasally delivered Gam-COVID-Vac (Sputnik V) vaccine induced a robust (no less than 180 days) systemic and local immune response in mice. High immunogenic properties of the vaccine were verified in non-human primates (common marmosets) by marked IgG and neutralizing antibody (NtAb) production in blood serum, antigen-specific Tcell proliferation and cytokine release of peripheral blood mononuclear cells accompanied by formation of IgA antibodies in the nasal mucosa. We also demonstrate that Sputnik V vaccine can provide sterilizing immunity in K18-hACE2 transgenic mice exposed to experimental lethal SARS-CoV-2 infection protecting them against severe lung immunopathology and mortality. We believe that intranasal Sputnik V vaccine is a promising novel needle-free mucosal vaccine candidate for primary immunization as well as for revaccination and is worth further clinical investigation. Taylor & Francis 2022-09-26 /pmc/articles/PMC9518644/ /pubmed/36031930 http://dx.doi.org/10.1080/22221751.2022.2119169 Text en © 2022 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group, on behalf of Shanghai Shangyixun Cultural Communication Co., Ltd https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Coronaviruses
Tukhvatulin, Amir I.
Gordeychuk, Ilya V.
Dolzhikova, Inna V.
Dzharullaeva, Alina S.
Krasina, Marina E.
Bayurova, Ekaterina O.
Grousova, Daria M.
Kovyrshina, Anna V.
Kondrashova, Alla S.
Avdoshina, Daria V.
Gulyaev, Stanislav A.
Gulyaeva, Tatiana V.
Moroz, Andrey V.
Illarionova, Viktoria V.
Zorkov, Ilya D.
Iliukhina, Anna A.
Shelkov, Artem Y.
Botikov, Andrei G.
Erokhova, Alina S.
Shcheblyakov, Dmitry V.
Esmagambetov, Ilias B.
Zubkova, Olga V.
Tokarskaya, Elisaveta A.
Savina, Daria M.
Vereveyko, Yulia R.
Ungur, Anastasiya S.
Naroditsky, Boris S.
Ishmukhametov, Aydar A.
Logunov, Denis Y.
Gintsburg, Alexander L.
Immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost COVID-19 vaccine Sputnik V in mice and non-human primates
title Immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost COVID-19 vaccine Sputnik V in mice and non-human primates
title_full Immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost COVID-19 vaccine Sputnik V in mice and non-human primates
title_fullStr Immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost COVID-19 vaccine Sputnik V in mice and non-human primates
title_full_unstemmed Immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost COVID-19 vaccine Sputnik V in mice and non-human primates
title_short Immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost COVID-19 vaccine Sputnik V in mice and non-human primates
title_sort immunogenicity and protectivity of intranasally delivered vector-based heterologous prime-boost covid-19 vaccine sputnik v in mice and non-human primates
topic Coronaviruses
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9518644/
https://www.ncbi.nlm.nih.gov/pubmed/36031930
http://dx.doi.org/10.1080/22221751.2022.2119169
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