Cargando…

Enhancement of the HIV-1-Specific Immune Response Induced by an mRNA Vaccine through Boosting with a Poxvirus MVA Vector Expressing the Same Antigen

Development of a vaccine against HIV remains a major target goal in the field. The recent success of mRNA vaccines against the coronavirus SARS-CoV-2 is pointing out a new era of vaccine designs against pathogens. Here, we have generated two types of mRNA vaccine candidates against HIV-1; one based...

Descripción completa

Detalles Bibliográficos
Autores principales: Gómez, Carmen Elena, Perdiguero, Beatriz, Usero, Lorena, Marcos-Villar, Laura, Miralles, Laia, Leal, Lorna, Sorzano, Carlos Óscar S., Sánchez-Corzo, Cristina, Plana, Montserrat, García, Felipe, Esteban, Mariano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8473054/
https://www.ncbi.nlm.nih.gov/pubmed/34579196
http://dx.doi.org/10.3390/vaccines9090959
_version_ 1784574892372393984
author Gómez, Carmen Elena
Perdiguero, Beatriz
Usero, Lorena
Marcos-Villar, Laura
Miralles, Laia
Leal, Lorna
Sorzano, Carlos Óscar S.
Sánchez-Corzo, Cristina
Plana, Montserrat
García, Felipe
Esteban, Mariano
author_facet Gómez, Carmen Elena
Perdiguero, Beatriz
Usero, Lorena
Marcos-Villar, Laura
Miralles, Laia
Leal, Lorna
Sorzano, Carlos Óscar S.
Sánchez-Corzo, Cristina
Plana, Montserrat
García, Felipe
Esteban, Mariano
author_sort Gómez, Carmen Elena
collection PubMed
description Development of a vaccine against HIV remains a major target goal in the field. The recent success of mRNA vaccines against the coronavirus SARS-CoV-2 is pointing out a new era of vaccine designs against pathogens. Here, we have generated two types of mRNA vaccine candidates against HIV-1; one based on unmodified vectors and the other on 1-methyl-3′-pseudouridylyl modified vectors expressing a T cell multiepitopic construct including protective conserved epitopes from HIV-1 Gag, Pol and Nef proteins (referred to as RNA-TMEP and RNA-TMEPmod, respectively) and defined their biological and immunological properties in cultured cells and in mice. In cultured cells, both mRNA vectors expressed the corresponding protein, with higher levels observed in the unmodified mRNA, leading to activated macrophages with differential induction of innate immune molecules. In mice, intranodal administration of the mRNAs induced the activation of specific T cell (CD4 and CD8) responses, and the levels were markedly enhanced after a booster immunization with the poxvirus vector MVA-TMEP expressing the same antigen. This immune activation was maintained even three months later. These findings revealed a potent combined immunization regimen able to enhance the HIV-1-specific immune responses induced by an mRNA vaccine that might be applicable to human vaccination programs with mRNA and MVA vectors.
format Online
Article
Text
id pubmed-8473054
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-84730542021-09-28 Enhancement of the HIV-1-Specific Immune Response Induced by an mRNA Vaccine through Boosting with a Poxvirus MVA Vector Expressing the Same Antigen Gómez, Carmen Elena Perdiguero, Beatriz Usero, Lorena Marcos-Villar, Laura Miralles, Laia Leal, Lorna Sorzano, Carlos Óscar S. Sánchez-Corzo, Cristina Plana, Montserrat García, Felipe Esteban, Mariano Vaccines (Basel) Article Development of a vaccine against HIV remains a major target goal in the field. The recent success of mRNA vaccines against the coronavirus SARS-CoV-2 is pointing out a new era of vaccine designs against pathogens. Here, we have generated two types of mRNA vaccine candidates against HIV-1; one based on unmodified vectors and the other on 1-methyl-3′-pseudouridylyl modified vectors expressing a T cell multiepitopic construct including protective conserved epitopes from HIV-1 Gag, Pol and Nef proteins (referred to as RNA-TMEP and RNA-TMEPmod, respectively) and defined their biological and immunological properties in cultured cells and in mice. In cultured cells, both mRNA vectors expressed the corresponding protein, with higher levels observed in the unmodified mRNA, leading to activated macrophages with differential induction of innate immune molecules. In mice, intranodal administration of the mRNAs induced the activation of specific T cell (CD4 and CD8) responses, and the levels were markedly enhanced after a booster immunization with the poxvirus vector MVA-TMEP expressing the same antigen. This immune activation was maintained even three months later. These findings revealed a potent combined immunization regimen able to enhance the HIV-1-specific immune responses induced by an mRNA vaccine that might be applicable to human vaccination programs with mRNA and MVA vectors. MDPI 2021-08-27 /pmc/articles/PMC8473054/ /pubmed/34579196 http://dx.doi.org/10.3390/vaccines9090959 Text en © 2021 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
Gómez, Carmen Elena
Perdiguero, Beatriz
Usero, Lorena
Marcos-Villar, Laura
Miralles, Laia
Leal, Lorna
Sorzano, Carlos Óscar S.
Sánchez-Corzo, Cristina
Plana, Montserrat
García, Felipe
Esteban, Mariano
Enhancement of the HIV-1-Specific Immune Response Induced by an mRNA Vaccine through Boosting with a Poxvirus MVA Vector Expressing the Same Antigen
title Enhancement of the HIV-1-Specific Immune Response Induced by an mRNA Vaccine through Boosting with a Poxvirus MVA Vector Expressing the Same Antigen
title_full Enhancement of the HIV-1-Specific Immune Response Induced by an mRNA Vaccine through Boosting with a Poxvirus MVA Vector Expressing the Same Antigen
title_fullStr Enhancement of the HIV-1-Specific Immune Response Induced by an mRNA Vaccine through Boosting with a Poxvirus MVA Vector Expressing the Same Antigen
title_full_unstemmed Enhancement of the HIV-1-Specific Immune Response Induced by an mRNA Vaccine through Boosting with a Poxvirus MVA Vector Expressing the Same Antigen
title_short Enhancement of the HIV-1-Specific Immune Response Induced by an mRNA Vaccine through Boosting with a Poxvirus MVA Vector Expressing the Same Antigen
title_sort enhancement of the hiv-1-specific immune response induced by an mrna vaccine through boosting with a poxvirus mva vector expressing the same antigen
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8473054/
https://www.ncbi.nlm.nih.gov/pubmed/34579196
http://dx.doi.org/10.3390/vaccines9090959
work_keys_str_mv AT gomezcarmenelena enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT perdiguerobeatriz enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT userolorena enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT marcosvillarlaura enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT miralleslaia enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT leallorna enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT sorzanocarlososcars enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT sanchezcorzocristina enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT planamontserrat enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT garciafelipe enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen
AT estebanmariano enhancementofthehiv1specificimmuneresponseinducedbyanmrnavaccinethroughboostingwithapoxvirusmvavectorexpressingthesameantigen