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Probiotics as Complementary Treatment for Metabolic Disorders
Mélanie Le Barz, Fernando F. Anhê, Thibaut V. Varin, Yves Desjardins, Emile Levy, Denis Roy, Maria C. Urdaci, André Marette
Diabetes Metab J. 2015;39(4):291-303.   Published online August 17, 2015
DOI: https://doi.org/10.4093/dmj.2015.39.4.291
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  • 80 Web of Science
  • 78 Crossref
AbstractAbstract PDFPubReader   

Over the past decade, growing evidence has established the gut microbiota as one of the most important determinants of metabolic disorders such as obesity and type 2 diabetes. Indeed, obesogenic diet can drastically alter bacterial populations (i.e., dysbiosis) leading to activation of pro-inflammatory mechanisms and metabolic endotoxemia, therefore promoting insulin resistance and cardiometabolic disorders. To counteract these deleterious effects, probiotic strains have been developed with the aim of reshaping the microbiome to improve gut health. In this review, we focus on benefits of widely used probiotics describing their potential mechanisms of action, especially their ability to decrease metabolic endotoxemia by restoring the disrupted intestinal mucosal barrier. We also discuss the perspective of using new bacterial strains such as butyrate-producing bacteria and the mucolytic Akkermansia muciniphila, as well as the use of prebiotics to enhance the functionality of probiotics. Finally, this review introduces the notion of genetically engineered bacterial strains specifically developed to deliver anti-inflammatory molecules to the gut.

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Sulwon Lecture 2014
Gut Microbiota and Metabolic Disorders
Kyu Yeon Hur, Myung-Shik Lee
Diabetes Metab J. 2015;39(3):198-203.   Published online June 15, 2015
DOI: https://doi.org/10.4093/dmj.2015.39.3.198
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AbstractAbstract PDFPubReader   

Gut microbiota plays critical physiological roles in the energy extraction and in the control of local or systemic immunity. Gut microbiota and its disturbance also appear to be involved in the pathogenesis of diverse diseases including metabolic disorders, gastrointestinal diseases, cancer, etc. In the metabolic point of view, gut microbiota can modulate lipid accumulation, lipopolysaccharide content and the production of short-chain fatty acids that affect food intake, inflammatory tone, or insulin signaling. Several strategies have been developed to change gut microbiota such as prebiotics, probiotics, certain antidiabetic drugs or fecal microbiota transplantation, which have diverse effects on body metabolism and on the development of metabolic disorders.

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Diabetes Metab J : Diabetes & Metabolism Journal