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Intestinal microbiota in metabolic diseases From bacterial community structure and functions to species of pathophysiological relevance

机译:代谢性疾病中的肠道菌群,从细菌群落结构和功能到病理生理相关物种

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摘要

The trillions of bacterial cells that colonize the mammalian digestive tract influence both host physiology and the fate of dietary compounds. Gnotobionts and fecal transplantation have been instrumental in revealing the causal role of intestinal bacteria in energy homeostasis and metabolic dysfunctions such as type-2 diabetes. However, the exact contribution of gut bacterial metabolism to host energy balance is still unclear and knowledge about underlying molecular mechanisms is scant. We have previously characterized cecal bacterial community functions and host responses in diet-induced obese mice using omics approaches. Based on these studies, we here discuss issues on the relevance of mouse models, give evidence that the metabolism of cholesterol-derived compounds by gut bacteria is of particular importance in the context of metabolic disorders and that dominant species of the family Coriobacteriaceae are good models to study these functions.
机译:定居哺乳动物消化道的数万亿细菌细胞影响宿主生理和饮食化合物的命运。腺寡糖和粪便移植在揭示肠道细菌在能量稳态和代谢功能障碍(如2型糖尿病)中的因果作用方面发挥了作用。然而,尚不清楚肠道细菌代谢对宿主能量平衡的确切贡献,并且关于潜在分子机制的知识很少。我们以前使用组学方法在饮食诱导的肥胖小鼠中表征了盲肠细菌群落功能和宿主反应。基于这些研究,我们在这里讨论小鼠模型的相关性问题,并提供证据证明肠道细菌对胆固醇衍生的化合物的代谢在代谢紊乱的情况下特别重要,科氏杆菌科的优势物种是很好的模型研究这些功能。

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