Cargando…

Short-Chain Fructo-Oligosaccharides Modulate Intestinal Microbiota and Metabolic Parameters of Humanized Gnotobiotic Diet Induced Obesity Mice

Prebiotic fibres like short-chain fructo-oligosaccharides (scFOS) are known to selectively modulate the composition of the intestinal microbiota and especially to stimulate Bifidobacteria. In parallel, the involvement of intestinal microbiota in host metabolic regulation has been recently highlighte...

Descripción completa

Detalles Bibliográficos
Autores principales: Respondek, Frederique, Gerard, Philippe, Bossis, Mathilde, Boschat, Laura, Bruneau, Aurélia, Rabot, Sylvie, Wagner, Anne, Martin, Jean-Charles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3741321/
https://www.ncbi.nlm.nih.gov/pubmed/23951074
http://dx.doi.org/10.1371/journal.pone.0071026
_version_ 1782280236496322560
author Respondek, Frederique
Gerard, Philippe
Bossis, Mathilde
Boschat, Laura
Bruneau, Aurélia
Rabot, Sylvie
Wagner, Anne
Martin, Jean-Charles
author_facet Respondek, Frederique
Gerard, Philippe
Bossis, Mathilde
Boschat, Laura
Bruneau, Aurélia
Rabot, Sylvie
Wagner, Anne
Martin, Jean-Charles
author_sort Respondek, Frederique
collection PubMed
description Prebiotic fibres like short-chain fructo-oligosaccharides (scFOS) are known to selectively modulate the composition of the intestinal microbiota and especially to stimulate Bifidobacteria. In parallel, the involvement of intestinal microbiota in host metabolic regulation has been recently highlighted. The objective of the study was to evaluate the effect of scFOS on the composition of the faecal microbiota and on metabolic parameters in an animal model of diet-induced obesity harbouring a human-type microbiota. Forty eight axenic C57BL/6J mice were inoculated with a sample of faecal human microbiota and randomly assigned to one of 3 diets for 7 weeks: a control diet, a high fat diet (HF, 60% of energy derived from fat)) or an isocaloric HF diet containing 10% of scFOS (HF-scFOS). Mice fed with the two HF gained at least 21% more weight than mice from the control group. Addition of scFOS partially abolished the deposition of fat mass but significantly increased the weight of the caecum. The analysis of the taxonomic composition of the faecal microbiota by FISH technique revealed that the addition of scFOS induced a significant increase of faecal Bifidobacteria and the Clostridium coccoides group whereas it decreased the Clostridium leptum group. In addition to modifying the composition of the faecal microbiota, scFOS most prominently affected the faecal metabolome (e.g. bile acids derivatives, hydroxyl monoenoic fatty acids) as well as urine, plasma hydrophilic and plasma lipid metabolomes. The increase in C. coccoides and the decrease in C. leptum, were highly correlated to these metabolic changes, including insulinaemia, as well as to the weight of the caecum (empty and full) but not the increase in Bifidobacteria. In conclusion scFOS induce profound metabolic changes by modulating the composition and the activity of the intestinal microbiota, that may partly explain their effect on the reduction of insulinaemia.
format Online
Article
Text
id pubmed-3741321
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37413212013-08-15 Short-Chain Fructo-Oligosaccharides Modulate Intestinal Microbiota and Metabolic Parameters of Humanized Gnotobiotic Diet Induced Obesity Mice Respondek, Frederique Gerard, Philippe Bossis, Mathilde Boschat, Laura Bruneau, Aurélia Rabot, Sylvie Wagner, Anne Martin, Jean-Charles PLoS One Research Article Prebiotic fibres like short-chain fructo-oligosaccharides (scFOS) are known to selectively modulate the composition of the intestinal microbiota and especially to stimulate Bifidobacteria. In parallel, the involvement of intestinal microbiota in host metabolic regulation has been recently highlighted. The objective of the study was to evaluate the effect of scFOS on the composition of the faecal microbiota and on metabolic parameters in an animal model of diet-induced obesity harbouring a human-type microbiota. Forty eight axenic C57BL/6J mice were inoculated with a sample of faecal human microbiota and randomly assigned to one of 3 diets for 7 weeks: a control diet, a high fat diet (HF, 60% of energy derived from fat)) or an isocaloric HF diet containing 10% of scFOS (HF-scFOS). Mice fed with the two HF gained at least 21% more weight than mice from the control group. Addition of scFOS partially abolished the deposition of fat mass but significantly increased the weight of the caecum. The analysis of the taxonomic composition of the faecal microbiota by FISH technique revealed that the addition of scFOS induced a significant increase of faecal Bifidobacteria and the Clostridium coccoides group whereas it decreased the Clostridium leptum group. In addition to modifying the composition of the faecal microbiota, scFOS most prominently affected the faecal metabolome (e.g. bile acids derivatives, hydroxyl monoenoic fatty acids) as well as urine, plasma hydrophilic and plasma lipid metabolomes. The increase in C. coccoides and the decrease in C. leptum, were highly correlated to these metabolic changes, including insulinaemia, as well as to the weight of the caecum (empty and full) but not the increase in Bifidobacteria. In conclusion scFOS induce profound metabolic changes by modulating the composition and the activity of the intestinal microbiota, that may partly explain their effect on the reduction of insulinaemia. Public Library of Science 2013-08-12 /pmc/articles/PMC3741321/ /pubmed/23951074 http://dx.doi.org/10.1371/journal.pone.0071026 Text en © 2013 Respondek et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Respondek, Frederique
Gerard, Philippe
Bossis, Mathilde
Boschat, Laura
Bruneau, Aurélia
Rabot, Sylvie
Wagner, Anne
Martin, Jean-Charles
Short-Chain Fructo-Oligosaccharides Modulate Intestinal Microbiota and Metabolic Parameters of Humanized Gnotobiotic Diet Induced Obesity Mice
title Short-Chain Fructo-Oligosaccharides Modulate Intestinal Microbiota and Metabolic Parameters of Humanized Gnotobiotic Diet Induced Obesity Mice
title_full Short-Chain Fructo-Oligosaccharides Modulate Intestinal Microbiota and Metabolic Parameters of Humanized Gnotobiotic Diet Induced Obesity Mice
title_fullStr Short-Chain Fructo-Oligosaccharides Modulate Intestinal Microbiota and Metabolic Parameters of Humanized Gnotobiotic Diet Induced Obesity Mice
title_full_unstemmed Short-Chain Fructo-Oligosaccharides Modulate Intestinal Microbiota and Metabolic Parameters of Humanized Gnotobiotic Diet Induced Obesity Mice
title_short Short-Chain Fructo-Oligosaccharides Modulate Intestinal Microbiota and Metabolic Parameters of Humanized Gnotobiotic Diet Induced Obesity Mice
title_sort short-chain fructo-oligosaccharides modulate intestinal microbiota and metabolic parameters of humanized gnotobiotic diet induced obesity mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3741321/
https://www.ncbi.nlm.nih.gov/pubmed/23951074
http://dx.doi.org/10.1371/journal.pone.0071026
work_keys_str_mv AT respondekfrederique shortchainfructooligosaccharidesmodulateintestinalmicrobiotaandmetabolicparametersofhumanizedgnotobioticdietinducedobesitymice
AT gerardphilippe shortchainfructooligosaccharidesmodulateintestinalmicrobiotaandmetabolicparametersofhumanizedgnotobioticdietinducedobesitymice
AT bossismathilde shortchainfructooligosaccharidesmodulateintestinalmicrobiotaandmetabolicparametersofhumanizedgnotobioticdietinducedobesitymice
AT boschatlaura shortchainfructooligosaccharidesmodulateintestinalmicrobiotaandmetabolicparametersofhumanizedgnotobioticdietinducedobesitymice
AT bruneauaurelia shortchainfructooligosaccharidesmodulateintestinalmicrobiotaandmetabolicparametersofhumanizedgnotobioticdietinducedobesitymice
AT rabotsylvie shortchainfructooligosaccharidesmodulateintestinalmicrobiotaandmetabolicparametersofhumanizedgnotobioticdietinducedobesitymice
AT wagneranne shortchainfructooligosaccharidesmodulateintestinalmicrobiotaandmetabolicparametersofhumanizedgnotobioticdietinducedobesitymice
AT martinjeancharles shortchainfructooligosaccharidesmodulateintestinalmicrobiotaandmetabolicparametersofhumanizedgnotobioticdietinducedobesitymice