The microbial-mammalian metabolic axis: a critical symbiotic relationship
File(s)Chilloux-COCN-050216.docx (110.21 KB)
Accepted version
Author(s)
Chilloux, J
Neves, AL
Boulangé, CL
Dumas, ME
Type
Journal Article
Abstract
Purpose of review: The microbial-mammalian symbiosis plays a critical role in metabolic health. Microbial metabolites emerge as key messengers in the complex communication between the gut microbiota and their host. These chemical signals are mainly derived from nutritional precursors, which in turn are also able to modify gut microbiota population. Recent advances in the characterization of the gut microbiome and the mechanisms involved in this symbiosis allow the development of nutritional interventions. This review covers the latest findings on the microbial-mammalian metabolic axis as a critical symbiotic relationship particularly relevant to clinical nutrition.
Recent findings: The modulation of host metabolism by metabolites derived from the gut microbiota highlights the importance of gut microbiota in disease prevention and causation. The composition of microbial populations in our gut ecosystem is a critical pathophysiological factor, mainly regulated by diet, but also by the host's characteristics (e.g. genetics, circadian clock, immune system, age). Tailored interventions, including dietary changes, the use of antibiotics, prebiotic and probiotic supplementation and faecal transplantation are promising strategies to manipulate microbial ecology.
Summary: The microbiome is now considered as an easily reachable target to prevent and treat related diseases. Recent findings in both mechanisms of its interactions with host metabolism and in strategies to modify gut microbiota will allow us to develop more effective treatments especially in metabolic diseases.
Recent findings: The modulation of host metabolism by metabolites derived from the gut microbiota highlights the importance of gut microbiota in disease prevention and causation. The composition of microbial populations in our gut ecosystem is a critical pathophysiological factor, mainly regulated by diet, but also by the host's characteristics (e.g. genetics, circadian clock, immune system, age). Tailored interventions, including dietary changes, the use of antibiotics, prebiotic and probiotic supplementation and faecal transplantation are promising strategies to manipulate microbial ecology.
Summary: The microbiome is now considered as an easily reachable target to prevent and treat related diseases. Recent findings in both mechanisms of its interactions with host metabolism and in strategies to modify gut microbiota will allow us to develop more effective treatments especially in metabolic diseases.
Date Issued
2016-05-31
Date Acceptance
2016-04-01
Citation
Current Opinion in Clinical Nutrition and Metabolic Care, 2016, 19 (4), pp.250-256
ISSN
1473-6519
Publisher
Wolters Kluwer
Start Page
250
End Page
256
Journal / Book Title
Current Opinion in Clinical Nutrition and Metabolic Care
Volume
19
Issue
4
Copyright Statement
© 2016 Wolters Kluwer Health, Inc. All rights reserved. This is a non-final version of an article published in final form in Current Opinion in Clinical Nutrition and Metabolic Care: http://dx.doi.org/10.1097/MCO.0000000000000284
Sponsor
Commission of the European Communities
Medical Research Council (MRC)
Grant Number
305312
MR/M501797/1
Subjects
Nutrition & Dietetics
11 Medical And Health Sciences
Publication Status
Published