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Novel mechanisms regulating endothelial barrier function in the pulmonary microcirculation

机译:调节肺微循环中内皮屏障功能的新机制

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摘要

The pulmonary epithelial and vascular endothelial cell layers provide two sequential physical and immunological barriers that together form a semi‐permeable interface and prevent alveolar and interstitial oedema formation. In this review, we focus specifically on the continuous endothelium of the pulmonary microvascular bed that warrants strict control of the exchange of gases, fluid, solutes and circulating cells between the plasma and the interstitial space. The present review provides an overview of emerging molecular mechanisms that permit constant transcellular exchange between the vascular and interstitial compartment, and cause, prevent or reverse lung endothelial barrier failure under experimental conditions, yet with a clinical perspective. Based on recent findings and at times seemingly conflicting results we discuss emerging paradigms of permeability regulation by altered ion transport as well as shifts in the homeostasis of sphingolipids, angiopoietins and prostaglandins.
机译:肺上皮和血管内皮细胞层提供了两个相继的物理和免疫屏障,共同形成了半渗透性界面并防止了肺泡和间质水肿的形成。在这篇综述中,我们特别关注肺微血管床的连续内皮细胞,该血管内皮细胞可确保严格控制血浆与组织间隙之间的气体,流体,溶质和循环细胞的交换。本综述提供了新兴的分子机制的概述,这些分子机制允许在血管和间质隔室之间进行不断的跨细胞交换,并在实验条件下引起,预防或逆转肺内皮屏障衰竭,但具有临床前景。基于最近的发现以及有时看似矛盾的结果,我们讨论了通过改变离子传输以及鞘脂,血管生成素和前列腺素的稳态平衡的变化而出现的通透性调节范式。

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