The impact of gut microbiota on vascularization of the small intestine

Nadja Paeslack, Christoph Reinhardt
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Abstract

The commensal microbiota resides in a mutualistic relationship within the mammalian gut. It significantly influences the formation of capillary networks in the small intestine, not only during development but also in adulthood. Mucosal capillaries in small intestinal villus structures play a critical role for the uptake of dietary nutrients and immune regulation. Emerging studies have elucidated how the composition of gut microbiota can influence not only the host’s postnatal gut development regarding immune tolerance, nutrient absorption and morphology, but also the development and maintenance of blood vessels and lymphatic capillaries within the small intestine. In particular, the analysis of gnotobiotic mouse models affirmed the importance of the gut microbiome, or even only single gut bacteria, in the remodelling of the small intestinal capillaries. Here, different epithelial-to-endothelial crosstalk pathways, e.g., Paneth cell-derived signals, Toll-like receptor signalling, or tissue factor-protease activated receptor-1 signalling, have been reported to mediate the villus vascular remodelling in a microbiota-dependent fashion. In this review article, we will provide a comprehensive overview on the relevant microbiota-host interaction pathways, which have been revealed to influence angiogenesis and vascular remodelling in the small intestine.
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肠道微生物群对小肠血管化的影响
在哺乳动物的肠道内,共生菌群以一种互惠的关系存在。它显著影响小肠毛细血管网络的形成,不仅在发育期间,而且在成年期。小肠绒毛结构中的粘膜毛细血管对营养物质的吸收和免疫调节起着至关重要的作用。新兴的研究已经阐明了肠道微生物群的组成不仅可以影响宿主出生后肠道的免疫耐受、营养吸收和形态发育,还可以影响小肠内血管和淋巴毛细血管的发育和维持。特别是,对小鼠模型的分析肯定了肠道微生物组,甚至是单一肠道细菌在小肠毛细血管重塑中的重要性。在这里,不同的上皮-内皮串扰通路,例如,Paneth细胞来源的信号,toll样受体信号,或组织因子蛋白酶激活受体-1信号,已被报道以微生物依赖的方式介导绒毛血管重构。在这篇综述文章中,我们将提供有关微生物-宿主相互作用途径的全面概述,这些途径已被发现影响小肠血管生成和血管重构。
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