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肠道黏膜健康和癌症风险中的微生物组及其代谢物。

The microbiota and its metabolites in colonic mucosal health and cancer risk.

机构信息

Division of General Internal Medicine, University of Pittsburgh Medical Center, Pittsburgh, Pennsylvania, USA.

出版信息

Nutr Clin Pract. 2012 Oct;27(5):624-35. doi: 10.1177/0884533612452012. Epub 2012 Aug 6.

Abstract

Recent advances in our ability to identify and characterize the human microbiota have transformed our appreciation of the function of the colon from an organ principally involved in the reabsorption of secretory fluids to a metabolic organ on a par with the liver. High-throughput technology has been applied to the identification of specific differences in microbial DNA, allowing the identification of trillions of microbes belonging to more than 1000 different species, with a metabolic mass of approximately 1.5 kg. The close proximity of these microbes with the mucosa and gut lymphoid tissue helps explain why a balanced microbiota is likely to preserve mucosal health, whereas an unbalanced composition, as seen in dysbiosis, may increase the prevalence of diseases not only of the mucosa but also within the body due to the strong interactions with the gut immune system, the largest immune organ of the body. Such abnormalities have been pinpointed as etiological factors in a wide range of diseases, including autoimmune disorders, allergy, irritable bowel syndrome, inflammatory bowel disease, obesity, and colon cancer. Recognition of the strong potential for food to manipulate microbiota composition has opened up new therapeutic strategies against these diseases based on dietary intervention.

摘要

近年来,我们识别和描述人类微生物组的能力不断提高,这改变了我们对结肠功能的认识,使其从主要参与分泌液重吸收的器官转变为与肝脏相当的代谢器官。高通量技术已应用于微生物 DNA 的特定差异识别,从而能够鉴定属于 1000 多种不同物种的数万亿种微生物,其代谢质量约为 1.5 千克。这些微生物与黏膜和肠道淋巴组织的密切接近有助于解释为什么平衡的微生物群可能有助于维持黏膜健康,而像在肠道菌群失调中看到的那样不平衡的组成可能会增加不仅是黏膜疾病而且是由于与肠道免疫系统的强烈相互作用而在体内疾病的患病率,肠道是人体最大的免疫器官。这些异常已被确定为多种疾病的病因因素,包括自身免疫性疾病、过敏、肠易激综合征、炎症性肠病、肥胖症和结肠癌。人们认识到食物具有很强的调节微生物组组成的潜力,这为基于饮食干预的这些疾病的新治疗策略开辟了道路。

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