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Development of a Multi-Epitope Universal mRNA Vaccine Candidate for Monkeypox, Smallpox, and Vaccinia Viruses: Design and In Silico Analyses

Notwithstanding the presence of a smallpox vaccine that is effective against monkeypox (mpox), developing a universal vaccine candidate against monkeypox virus (MPXV) is highly required as the mpox multi-country outbreak has increased global concern. MPXV, along with variola virus (VARV) and vaccini...

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Autores principales: Rcheulishvili, Nino, Mao, Jiawei, Papukashvili, Dimitri, Feng, Shunping, Liu, Cong, Yang, Xidan, Lin, Jihui, He, Yunjiao, Wang, Peng George
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222975/
https://www.ncbi.nlm.nih.gov/pubmed/37243206
http://dx.doi.org/10.3390/v15051120
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author Rcheulishvili, Nino
Mao, Jiawei
Papukashvili, Dimitri
Feng, Shunping
Liu, Cong
Yang, Xidan
Lin, Jihui
He, Yunjiao
Wang, Peng George
author_facet Rcheulishvili, Nino
Mao, Jiawei
Papukashvili, Dimitri
Feng, Shunping
Liu, Cong
Yang, Xidan
Lin, Jihui
He, Yunjiao
Wang, Peng George
author_sort Rcheulishvili, Nino
collection PubMed
description Notwithstanding the presence of a smallpox vaccine that is effective against monkeypox (mpox), developing a universal vaccine candidate against monkeypox virus (MPXV) is highly required as the mpox multi-country outbreak has increased global concern. MPXV, along with variola virus (VARV) and vaccinia virus (VACV), belongs to the Orthopoxvirus genus. Due to the genetic similarity of antigens in this study, we have designed a potentially universal mRNA vaccine based on conserved epitopes that are specific to these three viruses. In order to design a potentially universal mRNA vaccine, antigens A29, A30, A35, B6, and M1 were selected. The conserved sequences among the three viral species—MPXV, VACV, and VARV—were detected, and B and T cell epitopes containing the conserved elements were used for the design of the multi-epitope mRNA construct. Immunoinformatics analyses demonstrated the stability of the vaccine construct and optimal binding to MHC molecules. Humoral and cellular immune responses were induced by immune simulation analyses. Eventually, based on in silico analysis, the universal mRNA multi-epitope vaccine candidate designed in this study may have a potential protection against MPXV, VARV, and VACV that will contribute to the advancement of prevention strategies for unpredictable pandemics.
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spelling pubmed-102229752023-05-28 Development of a Multi-Epitope Universal mRNA Vaccine Candidate for Monkeypox, Smallpox, and Vaccinia Viruses: Design and In Silico Analyses Rcheulishvili, Nino Mao, Jiawei Papukashvili, Dimitri Feng, Shunping Liu, Cong Yang, Xidan Lin, Jihui He, Yunjiao Wang, Peng George Viruses Article Notwithstanding the presence of a smallpox vaccine that is effective against monkeypox (mpox), developing a universal vaccine candidate against monkeypox virus (MPXV) is highly required as the mpox multi-country outbreak has increased global concern. MPXV, along with variola virus (VARV) and vaccinia virus (VACV), belongs to the Orthopoxvirus genus. Due to the genetic similarity of antigens in this study, we have designed a potentially universal mRNA vaccine based on conserved epitopes that are specific to these three viruses. In order to design a potentially universal mRNA vaccine, antigens A29, A30, A35, B6, and M1 were selected. The conserved sequences among the three viral species—MPXV, VACV, and VARV—were detected, and B and T cell epitopes containing the conserved elements were used for the design of the multi-epitope mRNA construct. Immunoinformatics analyses demonstrated the stability of the vaccine construct and optimal binding to MHC molecules. Humoral and cellular immune responses were induced by immune simulation analyses. Eventually, based on in silico analysis, the universal mRNA multi-epitope vaccine candidate designed in this study may have a potential protection against MPXV, VARV, and VACV that will contribute to the advancement of prevention strategies for unpredictable pandemics. MDPI 2023-05-07 /pmc/articles/PMC10222975/ /pubmed/37243206 http://dx.doi.org/10.3390/v15051120 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rcheulishvili, Nino
Mao, Jiawei
Papukashvili, Dimitri
Feng, Shunping
Liu, Cong
Yang, Xidan
Lin, Jihui
He, Yunjiao
Wang, Peng George
Development of a Multi-Epitope Universal mRNA Vaccine Candidate for Monkeypox, Smallpox, and Vaccinia Viruses: Design and In Silico Analyses
title Development of a Multi-Epitope Universal mRNA Vaccine Candidate for Monkeypox, Smallpox, and Vaccinia Viruses: Design and In Silico Analyses
title_full Development of a Multi-Epitope Universal mRNA Vaccine Candidate for Monkeypox, Smallpox, and Vaccinia Viruses: Design and In Silico Analyses
title_fullStr Development of a Multi-Epitope Universal mRNA Vaccine Candidate for Monkeypox, Smallpox, and Vaccinia Viruses: Design and In Silico Analyses
title_full_unstemmed Development of a Multi-Epitope Universal mRNA Vaccine Candidate for Monkeypox, Smallpox, and Vaccinia Viruses: Design and In Silico Analyses
title_short Development of a Multi-Epitope Universal mRNA Vaccine Candidate for Monkeypox, Smallpox, and Vaccinia Viruses: Design and In Silico Analyses
title_sort development of a multi-epitope universal mrna vaccine candidate for monkeypox, smallpox, and vaccinia viruses: design and in silico analyses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10222975/
https://www.ncbi.nlm.nih.gov/pubmed/37243206
http://dx.doi.org/10.3390/v15051120
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