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The impact of nucleoside base modification in mRNA vaccine is influenced by the chemistry of its lipid nanoparticle delivery system

The use of modified nucleosides is an important approach to mitigate the intrinsic immunostimulatory activity of exogenous mRNA and to increase its translation for mRNA therapeutic applications. However, for vaccine applications, the intrinsic immunostimulatory nature of unmodified mRNA could help i...

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Autores principales: Bernard, Marie-Clotilde, Bazin, Emilie, Petiot, Nadine, Lemdani, Katia, Commandeur, Sylvie, Verdelet, Cécile, Margot, Sylvie, Perkov, Vladimir, Ripoll, Manon, Garinot, Marie, Ruiz, Sophie, Boudet, Florence, Rokbi, Bachra, Haensler, Jean
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10280092/
https://www.ncbi.nlm.nih.gov/pubmed/37346973
http://dx.doi.org/10.1016/j.omtn.2023.05.004
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author Bernard, Marie-Clotilde
Bazin, Emilie
Petiot, Nadine
Lemdani, Katia
Commandeur, Sylvie
Verdelet, Cécile
Margot, Sylvie
Perkov, Vladimir
Ripoll, Manon
Garinot, Marie
Ruiz, Sophie
Boudet, Florence
Rokbi, Bachra
Haensler, Jean
author_facet Bernard, Marie-Clotilde
Bazin, Emilie
Petiot, Nadine
Lemdani, Katia
Commandeur, Sylvie
Verdelet, Cécile
Margot, Sylvie
Perkov, Vladimir
Ripoll, Manon
Garinot, Marie
Ruiz, Sophie
Boudet, Florence
Rokbi, Bachra
Haensler, Jean
author_sort Bernard, Marie-Clotilde
collection PubMed
description The use of modified nucleosides is an important approach to mitigate the intrinsic immunostimulatory activity of exogenous mRNA and to increase its translation for mRNA therapeutic applications. However, for vaccine applications, the intrinsic immunostimulatory nature of unmodified mRNA could help induce productive immunity. Additionally, the ionizable lipid nanoparticles (LNPs) used to deliver mRNA vaccines can possess immunostimulatory properties that may influence the impact of nucleoside modification. Here we show that uridine replacement with N1-methylpseudouridine in an mRNA vaccine encoding influenza hemagglutinin had a significant impact on the induction of innate chemokines/cytokines and a positive impact on the induction of functional antibody titers in mice and macaques when MC3 or KC2 LNPs were used as delivery systems, while it impacted only minimally the titers obtained with L319 LNPs, indicating that the impact of nucleoside modification on mRNA vaccine efficacy varies with LNP composition. In line with previous observations, we noticed an inverse correlation between the induction of high innate IFN-α titers in the macaques and antigen-specific immune responses. Furthermore, and consistent with the species specificity of pathogen recognition receptors, we found that the effect of uridine replacement did not strictly translate from mice to non-human primates.
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spelling pubmed-102800922023-06-21 The impact of nucleoside base modification in mRNA vaccine is influenced by the chemistry of its lipid nanoparticle delivery system Bernard, Marie-Clotilde Bazin, Emilie Petiot, Nadine Lemdani, Katia Commandeur, Sylvie Verdelet, Cécile Margot, Sylvie Perkov, Vladimir Ripoll, Manon Garinot, Marie Ruiz, Sophie Boudet, Florence Rokbi, Bachra Haensler, Jean Mol Ther Nucleic Acids Original Article The use of modified nucleosides is an important approach to mitigate the intrinsic immunostimulatory activity of exogenous mRNA and to increase its translation for mRNA therapeutic applications. However, for vaccine applications, the intrinsic immunostimulatory nature of unmodified mRNA could help induce productive immunity. Additionally, the ionizable lipid nanoparticles (LNPs) used to deliver mRNA vaccines can possess immunostimulatory properties that may influence the impact of nucleoside modification. Here we show that uridine replacement with N1-methylpseudouridine in an mRNA vaccine encoding influenza hemagglutinin had a significant impact on the induction of innate chemokines/cytokines and a positive impact on the induction of functional antibody titers in mice and macaques when MC3 or KC2 LNPs were used as delivery systems, while it impacted only minimally the titers obtained with L319 LNPs, indicating that the impact of nucleoside modification on mRNA vaccine efficacy varies with LNP composition. In line with previous observations, we noticed an inverse correlation between the induction of high innate IFN-α titers in the macaques and antigen-specific immune responses. Furthermore, and consistent with the species specificity of pathogen recognition receptors, we found that the effect of uridine replacement did not strictly translate from mice to non-human primates. American Society of Gene & Cell Therapy 2023-05-08 /pmc/articles/PMC10280092/ /pubmed/37346973 http://dx.doi.org/10.1016/j.omtn.2023.05.004 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Bernard, Marie-Clotilde
Bazin, Emilie
Petiot, Nadine
Lemdani, Katia
Commandeur, Sylvie
Verdelet, Cécile
Margot, Sylvie
Perkov, Vladimir
Ripoll, Manon
Garinot, Marie
Ruiz, Sophie
Boudet, Florence
Rokbi, Bachra
Haensler, Jean
The impact of nucleoside base modification in mRNA vaccine is influenced by the chemistry of its lipid nanoparticle delivery system
title The impact of nucleoside base modification in mRNA vaccine is influenced by the chemistry of its lipid nanoparticle delivery system
title_full The impact of nucleoside base modification in mRNA vaccine is influenced by the chemistry of its lipid nanoparticle delivery system
title_fullStr The impact of nucleoside base modification in mRNA vaccine is influenced by the chemistry of its lipid nanoparticle delivery system
title_full_unstemmed The impact of nucleoside base modification in mRNA vaccine is influenced by the chemistry of its lipid nanoparticle delivery system
title_short The impact of nucleoside base modification in mRNA vaccine is influenced by the chemistry of its lipid nanoparticle delivery system
title_sort impact of nucleoside base modification in mrna vaccine is influenced by the chemistry of its lipid nanoparticle delivery system
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10280092/
https://www.ncbi.nlm.nih.gov/pubmed/37346973
http://dx.doi.org/10.1016/j.omtn.2023.05.004
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