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首页> 外文期刊>Current opinion in nephrology and hypertension >New aspects of glomerular filtration barrier structure and function: five layers (at least) not three.
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New aspects of glomerular filtration barrier structure and function: five layers (at least) not three.

机译:肾小球滤过屏障结构和功能的新方面:五层(至少)不是三层。

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PURPOSE OF REVIEW: Three structures (glomerular endothelial fenestrae, glomerular basement membrane and podocyte interfoot process/slit diaphragms) have traditionally been considered as the major determinants of glomerular permeability. We review recent work demonstrating the functional importance of two additional layers: the endothelial surface layer (ESL) and the subpodocyte space (SPS). RECENT FINDINGS: Removing glomerular endothelial cell monolayer ESL in vitro significantly alters monolayer permeability, supporting previous in-vivo demonstrations of the importance of the ESL in determining glomerular permeability. Whether fenestral diaphragms are present to support the ESL in healthy adult glomeruli has been examined in a recent report. On the downstream side of the glomerular filtration barrier, the SPS is a recently described structure that covers approximately two-thirds of the barrier, has highly restrictive dimensions and contributes to the hydraulic resistance and ultrafiltration characteristics of the glomerulus. Different layers of the barrier have also been shown to influence the permeability characteristics of one another, either through biophysical interactions, or through the activities of ligand-receptor axes that cross the various layers of the barrier. SUMMARY: The structure and function of the glomerular filtration barrier remains an area of significant new discovery, and recent work continues to highlight the complexity of this dynamic multilayered watershed.
机译:审查目的:传统上认为三种结构(肾小球内皮膜,肾小球基底膜和足细胞足间突/裂膜)是决定肾小球通透性的主要因素。我们回顾了最近的工作,这些工作表明了另外两个功能层的重要性:内皮表面层(ESL)和足细胞空间(SPS)。最新发现:体外去除肾小球内皮细胞单层ESL会显着改变单层通透性,支持先前的体内实验证明ESL在确定肾小球通透性中的重要性。在最近的一份报告中已经检查了是否存在nes肌横gl膜以支持健康成人肾小球中的ESL。在肾小球滤过屏障的下游侧,SPS是一种最近描述的结构,它覆盖了大约三分之二的屏障,具有高度限制性的尺寸,并有助于肾小球的抗水压性和超滤特性。屏障的不同层也已显示出通过生物物理相互作用或穿过跨越屏障各层的配体-受体轴的活性而彼此影响渗透特性。简介:肾小球滤过屏障的结构和功能仍然是一个重要的新发现领域,最近的工作仍在继续强调这种动态多层分水岭的复杂性。

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