Publications des scientifiques de l'IRD

Dao M.C., Everard A., Aron-Wisnewsky J., Sokolovska N., Prifti E., Verger E.O., Kayser B.D., Levenez F., Chilloux J., Hoyles L., Dumas M.E., Rizkalla S.W., Dore J., Cani P.D., Clement K., MICRO-Obes Consortium, Le Mouhaër S. (collab.), Cotillard A. (collab.), Kennedy S.P. (collab.), Pons N. (collab.), Le Chatelier E. (collab.), Almeida M. (collab.), Quinquis B. (collab.), Galleron N. (collab.), Batto J.M. (collab.), Renault P. (collab.), Zucker Jean-Daniel (collab.), Dusko Ehrlich S. (collab.), Blottière H. (collab.), Leclerc M. (collab.), Juste C. (collab.), De Wouters T. (collab.), Lepage P. (collab.). (2016). Akkermansia muciniphila and improved metabolic health during a dietary intervention in obesity : relationship with gut microbiome richness and ecology [plus Supplementary data]. Gut, 65 (3), p. 426-436 [+ 5 p.]. ISSN 0017-5749.

Titre du document
Akkermansia muciniphila and improved metabolic health during a dietary intervention in obesity : relationship with gut microbiome richness and ecology [plus Supplementary data]
Année de publication
2016
Type de document
Article référencé dans le Web of Science WOS:000371321700011
Auteurs
Dao M.C., Everard A., Aron-Wisnewsky J., Sokolovska N., Prifti E., Verger E.O., Kayser B.D., Levenez F., Chilloux J., Hoyles L., Dumas M.E., Rizkalla S.W., Dore J., Cani P.D., Clement K., MICRO-Obes Consortium, Le Mouhaër S., Cotillard A., Kennedy S.P., Pons N., Le Chatelier E., Almeida M., Quinquis B., Galleron N., Batto J.M., Renault P., Zucker Jean-Daniel (collab.), Dusko Ehrlich S., Blottière H., Leclerc M., Juste C., De Wouters T., Lepage P.
Source
Gut, 2016, 65 (3), p. 426-436 [+ 5 p.] ISSN 0017-5749
Objective. Individuals with obesity and type 2 diabetes differ from lean and healthy individuals in their abundance of certain gut microbial species and microbial gene richness. Abundance of Akkermansia muciniphila, a mucin-degrading bacterium, has been inversely associated with body fat mass and glucose intolerance in mice, but more evidence is needed in humans. The impact of diet and weight loss on this bacterial species is unknown. Our objective was to evaluate the association between faecal A. muciniphila abundance, faecal microbiome gene richness, diet, host characteristics, and their changes after calorie restriction (CR). Design. The intervention consisted of a 6-week CR period followed by a 6-week weight stabilisation diet in overweight and obese adults (N=49, including 41 women). Faecal A. muciniphila abundance, faecal microbial gene richness, diet and bioclinical parameters were measured at baseline and after CR and weight stabilisation. Results. At baseline A. muciniphila was inversely related to fasting glucose, waist-to-hip ratio and subcutaneous adipocyte diameter. Subjects with higher gene richness and A. muciniphila abundance exhibited the healthiest metabolic status, particularly in fasting plasma glucose, plasma triglycerides and body fat distribution. Individuals with higher baseline A. muciniphila displayed greater improvement in insulin sensitivity markers and other clinical parameters after CR. These participants also experienced a reduction in A. muciniphila abundance, but it remained significantly higher than in individuals with lower baseline abundance. A. muciniphila was associated with microbial species known to be related to health. Conclusions. A. muciniphila is associated with a healthier metabolic status and better clinical outcomes after CR in overweight/obese adults. The interaction between gut microbiota ecology and A. muciniphila warrants further investigation.
Plan de classement
Santé : généralités [050] ; Nutrition, alimentation [054] ; Biotechnologies [084]
Identifiant IRD
fdi:010068428
Contact