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The initial state of the human gut microbiome determines its reshaping by antibiotics

Microbiome studies have demonstrated the high inter-individual diversity of the gut microbiota. However, how the initial composition of the microbiome affects the impact of antibiotics on microbial communities is relatively unexplored. To specifically address this question, we administered a second-...

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Autores principales: Raymond, Frédéric, Ouameur, Amin A, Déraspe, Maxime, Iqbal, Naeem, Gingras, Hélène, Dridi, Bédis, Leprohon, Philippe, Plante, Pier-Luc, Giroux, Richard, Bérubé, Ève, Frenette, Johanne, Boudreau, Dominique K, Simard, Jean-Luc, Chabot, Isabelle, Domingo, Marc-Christian, Trottier, Sylvie, Boissinot, Maurice, Huletsky, Ann, Roy, Paul H, Ouellette, Marc, Bergeron, Michel G, Corbeil, Jacques
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817689/
https://www.ncbi.nlm.nih.gov/pubmed/26359913
http://dx.doi.org/10.1038/ismej.2015.148
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author Raymond, Frédéric
Ouameur, Amin A
Déraspe, Maxime
Iqbal, Naeem
Gingras, Hélène
Dridi, Bédis
Leprohon, Philippe
Plante, Pier-Luc
Giroux, Richard
Bérubé, Ève
Frenette, Johanne
Boudreau, Dominique K
Simard, Jean-Luc
Chabot, Isabelle
Domingo, Marc-Christian
Trottier, Sylvie
Boissinot, Maurice
Huletsky, Ann
Roy, Paul H
Ouellette, Marc
Bergeron, Michel G
Corbeil, Jacques
author_facet Raymond, Frédéric
Ouameur, Amin A
Déraspe, Maxime
Iqbal, Naeem
Gingras, Hélène
Dridi, Bédis
Leprohon, Philippe
Plante, Pier-Luc
Giroux, Richard
Bérubé, Ève
Frenette, Johanne
Boudreau, Dominique K
Simard, Jean-Luc
Chabot, Isabelle
Domingo, Marc-Christian
Trottier, Sylvie
Boissinot, Maurice
Huletsky, Ann
Roy, Paul H
Ouellette, Marc
Bergeron, Michel G
Corbeil, Jacques
author_sort Raymond, Frédéric
collection PubMed
description Microbiome studies have demonstrated the high inter-individual diversity of the gut microbiota. However, how the initial composition of the microbiome affects the impact of antibiotics on microbial communities is relatively unexplored. To specifically address this question, we administered a second-generation cephalosporin, cefprozil, to healthy volunteers. Stool samples gathered before antibiotic exposure, at the end of the treatment and 3 months later were analysed using shotgun metagenomic sequencing. On average, 15 billion nucleotides were sequenced for each sample. We show that standard antibiotic treatment can alter the gut microbiome in a specific, reproducible and predictable manner. The most consistent effect of the antibiotic was the increase of Lachnoclostridium bolteae in 16 out of the 18 cefprozil-exposed participants. Strikingly, we identified a subgroup of participants who were enriched in the opportunistic pathogen Enterobacter cloacae after exposure to the antibiotic, an effect linked to lower initial microbiome diversity and to a Bacteroides enterotype. Although the resistance gene content of participants' microbiomes was altered by the antibiotic, the impact of cefprozil remained specific to individual participants. Resistance genes that were not detectable prior to treatment were observed after a 7-day course of antibiotic administration. Specifically, point mutations in beta-lactamase bla(CfxA-6) were enriched after antibiotic treatment in several participants. This suggests that monitoring the initial composition of the microbiome before treatment could assist in the prevention of some of the adverse effects associated with antibiotics or other treatments.
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spelling pubmed-48176892016-04-15 The initial state of the human gut microbiome determines its reshaping by antibiotics Raymond, Frédéric Ouameur, Amin A Déraspe, Maxime Iqbal, Naeem Gingras, Hélène Dridi, Bédis Leprohon, Philippe Plante, Pier-Luc Giroux, Richard Bérubé, Ève Frenette, Johanne Boudreau, Dominique K Simard, Jean-Luc Chabot, Isabelle Domingo, Marc-Christian Trottier, Sylvie Boissinot, Maurice Huletsky, Ann Roy, Paul H Ouellette, Marc Bergeron, Michel G Corbeil, Jacques ISME J Original Article Microbiome studies have demonstrated the high inter-individual diversity of the gut microbiota. However, how the initial composition of the microbiome affects the impact of antibiotics on microbial communities is relatively unexplored. To specifically address this question, we administered a second-generation cephalosporin, cefprozil, to healthy volunteers. Stool samples gathered before antibiotic exposure, at the end of the treatment and 3 months later were analysed using shotgun metagenomic sequencing. On average, 15 billion nucleotides were sequenced for each sample. We show that standard antibiotic treatment can alter the gut microbiome in a specific, reproducible and predictable manner. The most consistent effect of the antibiotic was the increase of Lachnoclostridium bolteae in 16 out of the 18 cefprozil-exposed participants. Strikingly, we identified a subgroup of participants who were enriched in the opportunistic pathogen Enterobacter cloacae after exposure to the antibiotic, an effect linked to lower initial microbiome diversity and to a Bacteroides enterotype. Although the resistance gene content of participants' microbiomes was altered by the antibiotic, the impact of cefprozil remained specific to individual participants. Resistance genes that were not detectable prior to treatment were observed after a 7-day course of antibiotic administration. Specifically, point mutations in beta-lactamase bla(CfxA-6) were enriched after antibiotic treatment in several participants. This suggests that monitoring the initial composition of the microbiome before treatment could assist in the prevention of some of the adverse effects associated with antibiotics or other treatments. Nature Publishing Group 2016-03 2015-09-11 /pmc/articles/PMC4817689/ /pubmed/26359913 http://dx.doi.org/10.1038/ismej.2015.148 Text en Copyright © 2016 International Society for Microbial Ecology http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Article
Raymond, Frédéric
Ouameur, Amin A
Déraspe, Maxime
Iqbal, Naeem
Gingras, Hélène
Dridi, Bédis
Leprohon, Philippe
Plante, Pier-Luc
Giroux, Richard
Bérubé, Ève
Frenette, Johanne
Boudreau, Dominique K
Simard, Jean-Luc
Chabot, Isabelle
Domingo, Marc-Christian
Trottier, Sylvie
Boissinot, Maurice
Huletsky, Ann
Roy, Paul H
Ouellette, Marc
Bergeron, Michel G
Corbeil, Jacques
The initial state of the human gut microbiome determines its reshaping by antibiotics
title The initial state of the human gut microbiome determines its reshaping by antibiotics
title_full The initial state of the human gut microbiome determines its reshaping by antibiotics
title_fullStr The initial state of the human gut microbiome determines its reshaping by antibiotics
title_full_unstemmed The initial state of the human gut microbiome determines its reshaping by antibiotics
title_short The initial state of the human gut microbiome determines its reshaping by antibiotics
title_sort initial state of the human gut microbiome determines its reshaping by antibiotics
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817689/
https://www.ncbi.nlm.nih.gov/pubmed/26359913
http://dx.doi.org/10.1038/ismej.2015.148
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