Interactions between the host dietary habits and the gut microbiota influence weight management

Yuhua Gao , Jun Lin , Frank J. Gonzalez , Changtao Jiang

Life Medicine ›› 2023, Vol. 2 ›› Issue (3) : 3

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Life Medicine ›› 2023, Vol. 2 ›› Issue (3) : 3 DOI: 10.1093/lifemedi/lnad020
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Interactions between the host dietary habits and the gut microbiota influence weight management

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Yuhua Gao, Jun Lin, Frank J. Gonzalez, Changtao Jiang. Interactions between the host dietary habits and the gut microbiota influence weight management. Life Medicine, 2023, 2(3): 3 DOI:10.1093/lifemedi/lnad020

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References

[1]

Blüher M. Obesity: global epidemiology and pathogenesis. Nat Rev Endocrinol. 2019;15:288–98.

[2]

Wu J, Wang K, Wang X, et al. The role of the gut microbiome and its metabolites in metabolic diseases. Protein Cell. 2021;12:360–73.

[3]

Perry RJ, Peng L, Barry N, et al. Acetate mediates a microbiome-brain-β-cell axis to promote metabolic syndrome. Nature. 2016;534:213–7.

[4]

Thomas C, Gioiello A, Noriega L, et al. TGR5-mediated bile acid sensing controls glucose homeostasis. Cell Metab. 2009;10:167–77.

[5]

Liu R, Hong J, Xu X, et al. Gut microbiome and serum metabolome alterations in obesity and after weight-loss intervention. Nat Med. 2017;23:859–68.

[6]

Raoult D. Probiotics and obesity: a link? Nat Rev Microbiol. 2009;7:616.

[7]

Araújo JR, Tazi A, Burlen-Defranoux O, et al. Fermentation products of commensal bacteria alter enterocyte lipid metabolism. Cell Host Microbe. 2020;27:358–375.e357.

[8]

Zhong W, Wang H, Yang Y, et al. High-protein diet prevents fat mass increase after dieting by counteracting Lactobacillus-enhanced lipid absorption. Nat Metab. 2022;4:1713.

[9]

Takeuchi T, Kameyama K, Miyauchi E, et al. Fatty acid overproduction by gut commensal microbiota exacerbates obesity. Cell Metab. 2023;35:361–375.e369.

[10]

Kameyama K, Itoh K. Intestinal colonization by a Lachnospiraceae bacterium contributes to the development of diabetes in obese mice. Microbes Environ. 2014;29:427–30.

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