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细菌与肠道:一段不稳定的关系。

Bugs and the gut: an unstable marriage.

作者信息

Farthing Michael J G

机构信息

St George's Hospital Medical School, Cranmer Terrace, London SW17 0RE, UK.

出版信息

Best Pract Res Clin Gastroenterol. 2004 Apr;18(2):233-9. doi: 10.1016/j.bpg.2003.11.001.

Abstract

There is a symbiotic relationship between the gastrointestinal microflora and the human host. Commensal bacteria provide essential nutrients to the epithelium and promote healthy immune responses in the gut. Commensal bacteria such as Escherichia coli can, however, transform into pathogens when they acquire genetic material encoding virulence factors such as adhesins, enterotoxins, invasins and cytotoxins. Enterovirulent organisms 'communicate' with the host by a variety of diverse mechanisms; these underpin the pathogenic processes that are essential for the expression of diarrhoeal disease. Many of these mechanisms involve the activation of signal transduction pathways in epithelial cells. Classical pathways include activation of adenylate or guanylate cyclases to produce chloride secretion, and subversion of cytoskeletal functions to effect intimate attachment with or without invasion of epithelial cells. Other systems are also involved, including inflammatory cells and local neuroendocrine networks. Understanding the complex interactions between the human gastrointestinal tract and the commensals and pathogens which it encounters will hopefully help us to exploit further the beneficial effects of the 'marriage' and to find new ways of preventing and treating microbial disease of the intestine which occurs when the symbiotic arrangement breaks down.

摘要

胃肠道微生物群与人类宿主之间存在共生关系。共生细菌为上皮细胞提供必需的营养物质,并促进肠道内健康的免疫反应。然而,诸如大肠杆菌等共生细菌在获得编码黏附素、肠毒素、侵袭素和细胞毒素等毒力因子的遗传物质时,会转变为病原体。肠道致病微生物通过多种不同机制与宿主“交流”;这些机制是腹泻病表现所必需的致病过程的基础。其中许多机制涉及上皮细胞中信号转导途径的激活。经典途径包括激活腺苷酸或鸟苷酸环化酶以产生氯化物分泌,以及破坏细胞骨架功能以实现与上皮细胞的紧密附着(无论是否侵入)。其他系统也参与其中,包括炎症细胞和局部神经内分泌网络。了解人类胃肠道与其所接触的共生菌和病原体之间的复杂相互作用,有望帮助我们进一步利用这种“联姻”的有益效果,并找到预防和治疗肠道微生物疾病的新方法,这种疾病在共生关系破裂时就会发生。

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