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肾小球内皮细胞糖萼对跨肾小球白蛋白转运的有限作用。

The limited role of the glomerular endothelial cell glycocalyx as a barrier to transglomerular albumin transport.

机构信息

SalAqua Diagnostics Inc. , New York, NY , USA.

出版信息

Connect Tissue Res. 2014 Jan-Feb;55(1):2-7. doi: 10.3109/03008207.2013.867334.

DOI:10.3109/03008207.2013.867334
PMID:24437598
Abstract

For over 50 years, the glomerular filter has been thought to exert an uniquely significant barrier to the transport of albumin. The glomerular endothelial cell glycocalyx is considered to contribute to this important barrier restriction. In renal disease, structural alterations to this layer have been associated with albuminuria. It appears however the claims of the influence of this barrier have been overstated. The behaviour of albumin in systems that model the glycocalyx has been studied widely and the results demonstrate that the endothelial glycocalyx would offer only relatively small effective barrier to albumin. This has been confirmed in studies on macromolecular exchange in non-renal capillary beds with similar endothelial glycocalyx. The experimental perturbations to the glomerular endothelial glycocalyx (through enzyme treatments, saline washouts) also create only relatively small changes in the level of albuminuria as compared to changes in albumin excretion seen in renal disease and nephrotic states. Additionally, it is questionable how specific these perturbations are. Overall, the endothelial glycocalyx most likely has biological functions like it does in other extracellular regions involving hydration through osmotic pressure and offering charge-mediated binding of various molecules. This confirms work by Comper and colleagues that the glomerular sieving of albumin is not unique and is consistent with that of size selectivity that results in significant amounts of albumin being filtered normally, retrieved by proximal tubules and returned to the blood supply.

摘要

五十多年来,人们一直认为肾小球滤过膜对白蛋白的转运具有独特而重要的屏障作用。肾小球内皮细胞糖萼被认为有助于这种重要的屏障限制。在肾脏疾病中,该层的结构改变与白蛋白尿有关。然而,这种屏障的影响的说法似乎被夸大了。白蛋白在模拟糖萼的系统中的行为已经被广泛研究,结果表明,内皮糖萼对白蛋白的有效屏障作用相对较小。在具有类似内皮糖萼的非肾脏毛细血管床的大分子交换研究中也得到了证实。对肾小球内皮糖萼的实验干扰(通过酶处理、盐水冲洗)与肾脏疾病和肾病综合征中观察到的白蛋白排泄变化相比,仅导致白蛋白尿水平相对较小的变化。此外,这些干扰的特异性如何也值得怀疑。总的来说,内皮糖萼很可能具有生物功能,就像它在其他涉及渗透压水合作用和通过电荷介导结合各种分子的细胞外区域一样。这证实了 Comper 及其同事的工作,即白蛋白的肾小球筛除作用不是独特的,与导致大量白蛋白正常过滤、被近端肾小管回收并返回血液供应的大小选择性一致。

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The limited role of the glomerular endothelial cell glycocalyx as a barrier to transglomerular albumin transport.肾小球内皮细胞糖萼对跨肾小球白蛋白转运的有限作用。
Connect Tissue Res. 2014 Jan-Feb;55(1):2-7. doi: 10.3109/03008207.2013.867334.
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The normal kidney filters nephrotic levels of albumin retrieved by proximal tubule cells: retrieval is disrupted in nephrotic states.正常肾脏可滤过近端肾小管细胞回收的肾病水平的白蛋白:在肾病状态下回收功能受到破坏。
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The endothelial glycocalyx affords compatibility of Starling's principle and high cardiac interstitial albumin levels.内皮糖萼使斯塔林原理与高心脏间质白蛋白水平相兼容。
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Endothelial glycocalyx dysfunction in disease: albuminuria and increased microvascular permeability.疾病中的内皮糖萼功能障碍:白蛋白尿和微血管通透性增加。
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Commentary: The Glomerular Endothelium Restricts Albumin Filtration.评论:肾小球内皮细胞限制白蛋白滤过。
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