Peptides · 2024 · 35 citations · 121 references
Host-microbe InteractionsGut MicrobiotaGastrointestinal Peptide HormoneObesityMetabolic SyndromeGut-organ AxisMolecular NutritionPublic HealthMetabolic SignalingIntestinal MicrobiotaGut Microbiota MetabolitesMicrobiomeEndocrinologyPharmacologyMetabolic HealthIncretins SecretionPhysiologyDiabetesGut BarrierIncretin HormonesMetabolismMedicine
Over the past 40 years, the prevalence of obesity has risen dramatically, reaching epidemic proportions. By 2030 the number of people affected by obesity will reach 1.12 billion worldwide. Gastrointestinal hormones, namely incretins, play a vital role in the pathogenesis of obesity and its comorbidities. GIP (glucose-dependent insulinotropic polypeptide) and GLP-1 (glucagon-like peptide-1), which are secreted from the intestine after nutrient intake and stimulate insulin secretion from pancreatic β cells, influence lipid metabolism, gastric empting, appetite and body weight. The gut microbiota plays an important role in various metabolic conditions, including obesity and type 2 diabetes and influences host metabolism through the interaction with enteroendocrine cells that modulate incretins secretion. Gut microbiota metabolites, such as short-chain fatty acids (SCFAs) and indole, directly stimulate the release of incretins from colonic enteroendocrine cells influencing host satiety and food intake. Moreover, bariatric surgery and incretin-based therapies are associated with increase gut bacterial richness and diversity. Understanding the role of incretins, gut microbiota, and their metabolites in regulating metabolic processes is crucial to develop effective strategies for the management of obesity and its associated comorbidities.
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An obesity-associated gut microbiome with increased capacity for energy harvest
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Obesity, Nutrition, Energy Harvest +12
Human gut microbes associated with obesity
Ruth E. Ley, Peter J. Turnbaugh, Samuel Klein et al. · Nature · 2006 · 8.6K citations
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Nutrition, Dysbiosis, Immunology +24
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Dysbiosis, Medicine, Microbiota +9