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Early Post-Vaccination Gene Signatures Correlate With the Magnitude and Function of Vaccine-Induced HIV Envelope-Specific Plasma Antibodies in Infant Rhesus Macaques

A better understanding of the impact of early innate immune responses after vaccine priming on vaccine-elicited adaptive immune responses could inform rational design for effective HIV vaccines. The current study compared the whole blood molecular immune signatures of a 3M-052-SE adjuvanted HIV Env...

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Autores principales: Vijayan, K. K. Vidya, Cross, Kaitlyn A., Curtis, Alan D., Van Rompay, Koen K. A., Pollara, Justin, Fox, Christopher B., Tomai, Mark, Hanke, Tomáš, Fouda, Genevieve, Hudgens, Michael G., Permar, Sallie R., De Paris, Kristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9094446/
https://www.ncbi.nlm.nih.gov/pubmed/35572573
http://dx.doi.org/10.3389/fimmu.2022.840976
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author Vijayan, K. K. Vidya
Cross, Kaitlyn A.
Curtis, Alan D.
Van Rompay, Koen K. A.
Pollara, Justin
Fox, Christopher B.
Tomai, Mark
Hanke, Tomáš
Fouda, Genevieve
Hudgens, Michael G.
Permar, Sallie R.
De Paris, Kristina
author_facet Vijayan, K. K. Vidya
Cross, Kaitlyn A.
Curtis, Alan D.
Van Rompay, Koen K. A.
Pollara, Justin
Fox, Christopher B.
Tomai, Mark
Hanke, Tomáš
Fouda, Genevieve
Hudgens, Michael G.
Permar, Sallie R.
De Paris, Kristina
author_sort Vijayan, K. K. Vidya
collection PubMed
description A better understanding of the impact of early innate immune responses after vaccine priming on vaccine-elicited adaptive immune responses could inform rational design for effective HIV vaccines. The current study compared the whole blood molecular immune signatures of a 3M-052-SE adjuvanted HIV Env protein vaccine to a regimen combining the adjuvanted Env protein with simultaneous administration of a modified Vaccinia Ankara vector expressing HIV Env in infant rhesus macaques at days 0, 1, and 3 post vaccine prime. Both vaccines induced a rapid innate response, evident by elevated inflammatory plasma cytokines and altered gene expression. We identified 25 differentially-expressed genes (DEG) on day 1 compared to day 0 in the HIV protein vaccine group. In contrast, in the group that received both the Env protein and the MVA-Env vaccine only two DEG were identified, implying that the MVA-Env modified the innate response to the adjuvanted protein vaccine. By day 3, only three DEG maintained altered expression, indicative of the transient nature of the innate response. The DEG represented immune pathways associated with complement activation, type I interferon and interleukin signaling, pathogen sensing, and induction of adaptive immunity. DEG expression on day 1 was correlated to Env-specific antibody responses, in particular antibody-dependent cytotoxicity responses at week 34, and Env-specific follicular T helper cells. Results from network analysis supported the interaction of DEG and their proteins in B cell activation. These results emphasize that vaccine-induced HIV-specific antibody responses can be optimized through the modulation of the innate response to the vaccine prime.
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spelling pubmed-90944462022-05-12 Early Post-Vaccination Gene Signatures Correlate With the Magnitude and Function of Vaccine-Induced HIV Envelope-Specific Plasma Antibodies in Infant Rhesus Macaques Vijayan, K. K. Vidya Cross, Kaitlyn A. Curtis, Alan D. Van Rompay, Koen K. A. Pollara, Justin Fox, Christopher B. Tomai, Mark Hanke, Tomáš Fouda, Genevieve Hudgens, Michael G. Permar, Sallie R. De Paris, Kristina Front Immunol Immunology A better understanding of the impact of early innate immune responses after vaccine priming on vaccine-elicited adaptive immune responses could inform rational design for effective HIV vaccines. The current study compared the whole blood molecular immune signatures of a 3M-052-SE adjuvanted HIV Env protein vaccine to a regimen combining the adjuvanted Env protein with simultaneous administration of a modified Vaccinia Ankara vector expressing HIV Env in infant rhesus macaques at days 0, 1, and 3 post vaccine prime. Both vaccines induced a rapid innate response, evident by elevated inflammatory plasma cytokines and altered gene expression. We identified 25 differentially-expressed genes (DEG) on day 1 compared to day 0 in the HIV protein vaccine group. In contrast, in the group that received both the Env protein and the MVA-Env vaccine only two DEG were identified, implying that the MVA-Env modified the innate response to the adjuvanted protein vaccine. By day 3, only three DEG maintained altered expression, indicative of the transient nature of the innate response. The DEG represented immune pathways associated with complement activation, type I interferon and interleukin signaling, pathogen sensing, and induction of adaptive immunity. DEG expression on day 1 was correlated to Env-specific antibody responses, in particular antibody-dependent cytotoxicity responses at week 34, and Env-specific follicular T helper cells. Results from network analysis supported the interaction of DEG and their proteins in B cell activation. These results emphasize that vaccine-induced HIV-specific antibody responses can be optimized through the modulation of the innate response to the vaccine prime. Frontiers Media S.A. 2022-04-27 /pmc/articles/PMC9094446/ /pubmed/35572573 http://dx.doi.org/10.3389/fimmu.2022.840976 Text en Copyright © 2022 Vijayan, Cross, Curtis, Van Rompay, Pollara, Fox, Tomai, Hanke, Fouda, Hudgens, Permar and De Paris https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Vijayan, K. K. Vidya
Cross, Kaitlyn A.
Curtis, Alan D.
Van Rompay, Koen K. A.
Pollara, Justin
Fox, Christopher B.
Tomai, Mark
Hanke, Tomáš
Fouda, Genevieve
Hudgens, Michael G.
Permar, Sallie R.
De Paris, Kristina
Early Post-Vaccination Gene Signatures Correlate With the Magnitude and Function of Vaccine-Induced HIV Envelope-Specific Plasma Antibodies in Infant Rhesus Macaques
title Early Post-Vaccination Gene Signatures Correlate With the Magnitude and Function of Vaccine-Induced HIV Envelope-Specific Plasma Antibodies in Infant Rhesus Macaques
title_full Early Post-Vaccination Gene Signatures Correlate With the Magnitude and Function of Vaccine-Induced HIV Envelope-Specific Plasma Antibodies in Infant Rhesus Macaques
title_fullStr Early Post-Vaccination Gene Signatures Correlate With the Magnitude and Function of Vaccine-Induced HIV Envelope-Specific Plasma Antibodies in Infant Rhesus Macaques
title_full_unstemmed Early Post-Vaccination Gene Signatures Correlate With the Magnitude and Function of Vaccine-Induced HIV Envelope-Specific Plasma Antibodies in Infant Rhesus Macaques
title_short Early Post-Vaccination Gene Signatures Correlate With the Magnitude and Function of Vaccine-Induced HIV Envelope-Specific Plasma Antibodies in Infant Rhesus Macaques
title_sort early post-vaccination gene signatures correlate with the magnitude and function of vaccine-induced hiv envelope-specific plasma antibodies in infant rhesus macaques
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9094446/
https://www.ncbi.nlm.nih.gov/pubmed/35572573
http://dx.doi.org/10.3389/fimmu.2022.840976
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