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肠道的生态学和生理学。

Ecology and physiology of the intestinal tract.

机构信息

Department of Gastrointestinal Microbiology, German Institute of Human Nutrition Potsdam-Rehbruecke, Nuthetal, Germany.

出版信息

Curr Top Microbiol Immunol. 2013;358:247-72. doi: 10.1007/82_2011_192.

Abstract

The number of microorganisms inhabiting the human digestive tract exceeds the number of body cells by a factor of ten. This microbial community affects host physiology and host health. The metabolic potential of the gut microbiota is immense affording the extraction of energy from otherwise indigestible carbohydrates (dietary fiber) and the conversion of host-derived substances, non-nutritive dietary components and drugs. Recognized functions of the gut microbiota include provision of colonization resistance against pathogens and priming of both the innate and the acquired immune systems. However, the intestinal microbiota may also contribute to the development of diseases such as ulcerative colitis and colorectal cancer. Culture-dependent studies provided basic knowledge on the gut microbiota, but only the advent of culture-independent molecular methods led to a better understanding of host-microbe interactions. The application of metagenomics to the gut microbial ecosystem revealed truly remarkable correlations between certain diseases and the gut microbiome. It also led to the suggestion of the existence of a 'core microbiome' that encompasses key functions shared by each individual. However, the mechanisms underlying host-microbe interactions have not yet been unraveled.

摘要

人类消化道中栖息的微生物数量超过体细胞数量的十倍。这个微生物群落影响着宿主的生理和健康。肠道微生物群具有巨大的代谢潜力,能够从原本无法消化的碳水化合物(膳食纤维)中提取能量,并将宿主来源的物质、非营养性膳食成分和药物进行转化。公认的肠道微生物群的功能包括提供对病原体的定植抗性和对先天和获得性免疫系统的激活。然而,肠道微生物群也可能导致溃疡性结肠炎和结直肠癌等疾病的发生。基于培养的研究为肠道微生物群提供了基础知识,但只有非培养依赖的分子方法的出现才使我们更好地理解了宿主-微生物的相互作用。将宏基因组学应用于肠道微生物生态系统,揭示了某些疾病与肠道微生物组之间存在着惊人的相关性。这也促使人们提出了“核心微生物组”的存在,它包含了每个个体共有的关键功能。然而,宿主-微生物相互作用的机制尚未被揭示。

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