Microbial modulation of innate defense: goblet cells and the intestinal mucus layer.

B. Deplancke, H. Gaskins
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引用次数: 929

Abstract

The gastrointestinal epithelium is covered by a protective mucus gel composed predominantly of mucin glycoproteins that are synthesized and secreted by goblet cells. Changes in goblet cell functions and in the chemical composition of intestinal mucus are detected in response to a broad range of luminal insults, including alterations of the normal microbiota. However, the regulatory networks that mediate goblet cell responses to intestinal insults are poorly defined. The present review summarizes the results of developmental, gnotobiotic, and in vitro studies that showed alterations in mucin gene expression, mucus composition, or mucus secretion in response to intestinal microbes or host-derived inflammatory mediators. The dynamic nature of the mucus layer is shown. Available data indicate that intestinal microbes may affect goblet cell dynamics and the mucus layer directly via the local release of bioactive factors or indirectly via activation of host immune cells. A precise definition of the regulatory networks that interface with goblet cells may have broad biomedical applications because mucus alterations appear to characterize most diseases of mucosal tissues.
先天防御的微生物调节:杯状细胞和肠黏液层。
胃肠道上皮被一层保护性粘液凝胶覆盖,这种粘液凝胶主要由杯状细胞合成和分泌的粘蛋白糖蛋白组成。杯状细胞功能和肠粘液化学成分的变化是对广泛的肠道损伤的反应,包括正常微生物群的改变。然而,介导杯状细胞对肠道损伤反应的调节网络尚不明确。本文综述了发育、非生物和体外研究的结果,这些研究表明黏液蛋白基因表达、黏液成分或黏液分泌在肠道微生物或宿主来源的炎症介质的反应中发生了变化。图示黏液层的动态性质。现有数据表明,肠道微生物可能通过局部释放生物活性因子或通过激活宿主免疫细胞间接影响杯状细胞动力学和黏液层。由于粘液改变似乎是大多数粘膜组织疾病的特征,因此对与杯状细胞交界的调节网络的精确定义可能具有广泛的生物医学应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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