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Vaccine Hyporesponse Induced by Individual Antibiotic Treatment in Mice and Non-Human Primates Is Diminished upon Recovery of the Gut Microbiome

Emerging evidence demonstrates a connection between microbiome composition and suboptimal response to vaccines (vaccine hyporesponse). Harnessing the interaction between microbes and the immune system could provide novel therapeutic strategies for improving vaccine response. Currently we do not full...

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Autores principales: Swaminathan, Gokul, Citron, Michael, Xiao, Jianying, Norton, James E., Reens, Abigail L., Topçuoğlu, Begüm D., Maritz, Julia M., Lee, Keun-Joong, Freed, Daniel C., Weber, Teresa M., White, Cory H., Kadam, Mahika, Spofford, Erin, Bryant-Hall, Erin, Salituro, Gino, Kommineni, Sushma, Liang, Xue, Danilchanka, Olga, Fontenot, Jane A., Woelk, Christopher H., Gutierrez, Dario A., Hazuda, Daria J., Hannigan, Geoffrey D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8619314/
https://www.ncbi.nlm.nih.gov/pubmed/34835271
http://dx.doi.org/10.3390/vaccines9111340
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author Swaminathan, Gokul
Citron, Michael
Xiao, Jianying
Norton, James E.
Reens, Abigail L.
Topçuoğlu, Begüm D.
Maritz, Julia M.
Lee, Keun-Joong
Freed, Daniel C.
Weber, Teresa M.
White, Cory H.
Kadam, Mahika
Spofford, Erin
Bryant-Hall, Erin
Salituro, Gino
Kommineni, Sushma
Liang, Xue
Danilchanka, Olga
Fontenot, Jane A.
Woelk, Christopher H.
Gutierrez, Dario A.
Hazuda, Daria J.
Hannigan, Geoffrey D.
author_facet Swaminathan, Gokul
Citron, Michael
Xiao, Jianying
Norton, James E.
Reens, Abigail L.
Topçuoğlu, Begüm D.
Maritz, Julia M.
Lee, Keun-Joong
Freed, Daniel C.
Weber, Teresa M.
White, Cory H.
Kadam, Mahika
Spofford, Erin
Bryant-Hall, Erin
Salituro, Gino
Kommineni, Sushma
Liang, Xue
Danilchanka, Olga
Fontenot, Jane A.
Woelk, Christopher H.
Gutierrez, Dario A.
Hazuda, Daria J.
Hannigan, Geoffrey D.
author_sort Swaminathan, Gokul
collection PubMed
description Emerging evidence demonstrates a connection between microbiome composition and suboptimal response to vaccines (vaccine hyporesponse). Harnessing the interaction between microbes and the immune system could provide novel therapeutic strategies for improving vaccine response. Currently we do not fully understand the mechanisms and dynamics by which the microbiome influences vaccine response. Using both mouse and non-human primate models, we report that short-term oral treatment with a single antibiotic (vancomycin) results in the disruption of the gut microbiome and this correlates with a decrease in systemic levels of antigen-specific IgG upon subsequent parenteral vaccination. We further show that recovery of microbial diversity before vaccination prevents antibiotic-induced vaccine hyporesponse, and that the antigen specific IgG response correlates with the recovery of microbiome diversity. RNA sequencing analysis of small intestine, spleen, whole blood, and secondary lymphoid organs from antibiotic treated mice revealed a dramatic impact on the immune system, and a muted inflammatory signature is correlated with loss of bacteria from Lachnospiraceae, Ruminococcaceae, and Clostridiaceae. These results suggest that microbially modulated immune pathways may be leveraged to promote vaccine response and will inform future vaccine design and development strategies.
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spelling pubmed-86193142021-11-27 Vaccine Hyporesponse Induced by Individual Antibiotic Treatment in Mice and Non-Human Primates Is Diminished upon Recovery of the Gut Microbiome Swaminathan, Gokul Citron, Michael Xiao, Jianying Norton, James E. Reens, Abigail L. Topçuoğlu, Begüm D. Maritz, Julia M. Lee, Keun-Joong Freed, Daniel C. Weber, Teresa M. White, Cory H. Kadam, Mahika Spofford, Erin Bryant-Hall, Erin Salituro, Gino Kommineni, Sushma Liang, Xue Danilchanka, Olga Fontenot, Jane A. Woelk, Christopher H. Gutierrez, Dario A. Hazuda, Daria J. Hannigan, Geoffrey D. Vaccines (Basel) Article Emerging evidence demonstrates a connection between microbiome composition and suboptimal response to vaccines (vaccine hyporesponse). Harnessing the interaction between microbes and the immune system could provide novel therapeutic strategies for improving vaccine response. Currently we do not fully understand the mechanisms and dynamics by which the microbiome influences vaccine response. Using both mouse and non-human primate models, we report that short-term oral treatment with a single antibiotic (vancomycin) results in the disruption of the gut microbiome and this correlates with a decrease in systemic levels of antigen-specific IgG upon subsequent parenteral vaccination. We further show that recovery of microbial diversity before vaccination prevents antibiotic-induced vaccine hyporesponse, and that the antigen specific IgG response correlates with the recovery of microbiome diversity. RNA sequencing analysis of small intestine, spleen, whole blood, and secondary lymphoid organs from antibiotic treated mice revealed a dramatic impact on the immune system, and a muted inflammatory signature is correlated with loss of bacteria from Lachnospiraceae, Ruminococcaceae, and Clostridiaceae. These results suggest that microbially modulated immune pathways may be leveraged to promote vaccine response and will inform future vaccine design and development strategies. MDPI 2021-11-17 /pmc/articles/PMC8619314/ /pubmed/34835271 http://dx.doi.org/10.3390/vaccines9111340 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
Swaminathan, Gokul
Citron, Michael
Xiao, Jianying
Norton, James E.
Reens, Abigail L.
Topçuoğlu, Begüm D.
Maritz, Julia M.
Lee, Keun-Joong
Freed, Daniel C.
Weber, Teresa M.
White, Cory H.
Kadam, Mahika
Spofford, Erin
Bryant-Hall, Erin
Salituro, Gino
Kommineni, Sushma
Liang, Xue
Danilchanka, Olga
Fontenot, Jane A.
Woelk, Christopher H.
Gutierrez, Dario A.
Hazuda, Daria J.
Hannigan, Geoffrey D.
Vaccine Hyporesponse Induced by Individual Antibiotic Treatment in Mice and Non-Human Primates Is Diminished upon Recovery of the Gut Microbiome
title Vaccine Hyporesponse Induced by Individual Antibiotic Treatment in Mice and Non-Human Primates Is Diminished upon Recovery of the Gut Microbiome
title_full Vaccine Hyporesponse Induced by Individual Antibiotic Treatment in Mice and Non-Human Primates Is Diminished upon Recovery of the Gut Microbiome
title_fullStr Vaccine Hyporesponse Induced by Individual Antibiotic Treatment in Mice and Non-Human Primates Is Diminished upon Recovery of the Gut Microbiome
title_full_unstemmed Vaccine Hyporesponse Induced by Individual Antibiotic Treatment in Mice and Non-Human Primates Is Diminished upon Recovery of the Gut Microbiome
title_short Vaccine Hyporesponse Induced by Individual Antibiotic Treatment in Mice and Non-Human Primates Is Diminished upon Recovery of the Gut Microbiome
title_sort vaccine hyporesponse induced by individual antibiotic treatment in mice and non-human primates is diminished upon recovery of the gut microbiome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8619314/
https://www.ncbi.nlm.nih.gov/pubmed/34835271
http://dx.doi.org/10.3390/vaccines9111340
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