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用于研究肠道微生物免疫相互作用的基础脊索动物模型。

A Basal chordate model for studies of gut microbial immune interactions.

机构信息

Department of Pediatrics, USF/ACH Children's Research Institute, University of South Florida College of Medicine St. Petersburg, FL, USA.

出版信息

Front Immunol. 2012 May 3;3:96. doi: 10.3389/fimmu.2012.00096. eCollection 2012.

Abstract

Complex symbiotic interactions at the surface of host epithelia govern most encounters between host and microbe. The epithelium of the gut is a physiologically ancient structure that is comprised of a single layer of cells and is thought to possess fully developed immunological capabilities. Ciona intestinalis (sea squirt), which is a descendant of the last common ancestor of all vertebrates, is a potentially valuable model for studying barrier defenses and gut microbial immune interactions. A variety of innate immunological phenomena have been well characterized in Ciona, of which many are active in the gut tissues. Interactions with gut microbiota likely involve surface epithelium, secreted immune molecules including variable region-containing chitin-binding proteins, and hemocytes from a densely populated laminar tissue space. The microbial composition of representative gut luminal contents has been characterized by molecular screening and a potentially relevant, reproducible, dysbiosis can be induced via starvation. The dialog between host and microbe in the gut can be investigated in Ciona against the background of a competent innate immune system and in the absence of the integral elements and processes that are characteristic of vertebrate adaptive immunity.

摘要

宿主上皮表面的复杂共生相互作用控制着宿主与微生物之间的大多数接触。肠道上皮是一种具有生理古老结构的单层细胞,被认为具有完全发育的免疫功能。海鞘(sea squirt)是所有脊椎动物的最后共同祖先的后裔,是研究屏障防御和肠道微生物免疫相互作用的潜在有价值的模型。在海鞘中已经很好地描述了多种先天免疫现象,其中许多在肠道组织中活跃。与肠道微生物群的相互作用可能涉及表面上皮、分泌的免疫分子,包括含有可变区的几丁质结合蛋白,以及来自密集层状组织空间的血细胞。通过分子筛选对代表性肠道腔内容物的微生物组成进行了描述,并且可以通过饥饿来诱导潜在相关的、可重复的、生态失调。在没有适应免疫特征的完整要素和过程的情况下,在具有健全先天免疫系统的背景下,可以在海鞘中研究肠道中宿主与微生物之间的对话。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0240/3342567/4596e4b9cc05/fimmu-03-00096-g001.jpg

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