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VEGFA 和 VEGFC 对体外肾小球微血管内皮细胞糖萼糖胺聚糖的调节。

Glycosaminoglycan regulation by VEGFA and VEGFC of the glomerular microvascular endothelial cell glycocalyx in vitro.

机构信息

Academic Renal Unit, School of Clinical Sciences, Southmead Hospital, University of Bristol, Bristol, United Kingdom.

出版信息

Am J Pathol. 2013 Aug;183(2):604-16. doi: 10.1016/j.ajpath.2013.04.019. Epub 2013 Jun 12.

Abstract

Damage to endothelial glycocalyx impairs vascular barrier function and may contribute to progression of chronic vascular disease. An early indicator is microalbuminuria resulting from glomerular filtration barrier damage. We investigated the contributions of hyaluronic acid (HA) and chondroitin sulfate (CS) to glomerular microvascular endothelial cell (GEnC) glycocalyx and examined whether these are modified by vascular endothelial growth factors A and C (VEGFA and VEGFC). HA and CS were imaged on GEnCs and their resynthesis was examined. The effect of HA and CS on transendothelial electrical resistance (TEER) and labeled albumin flux across monolayers was assessed. Effects of VEGFA and VEGFC on production and charge characteristics of glycosaminoglycan (GAG) were examined via metabolic labeling and liquid chromatography. GAG shedding was quantified using Alcian Blue. NDST2 expression was examined using real-time PCR. GEnCs expressed HA and CS in the glycocalyx. CS contributed to the barrier to both ion (TEER) and protein flux across the monolayer; HA had only a limited effect. VEGFC promoted HA synthesis and increased the charge density of synthesized GAGs. In contrast, VEGFA induced shedding of charged GAGs. CS plays a role in restriction of macromolecular flux across GEnC monolayers, and VEGFA and VEGFC differentially regulate synthesis, charge, and shedding of GAGs in GEnCs. These observations have important implications for endothelial barrier regulation in glomerular and other microvascular beds.

摘要

内皮糖萼损伤会损害血管屏障功能,并可能导致慢性血管疾病的进展。早期的一个指标是肾小球滤过屏障损伤导致的微量白蛋白尿。我们研究了透明质酸 (HA) 和硫酸软骨素 (CS) 对肾小球微血管内皮细胞 (GEnC) 糖萼的贡献,并研究了血管内皮生长因子 A 和 C (VEGFA 和 VEGFC) 是否会改变这些作用。我们对 GEnC 上的 HA 和 CS 进行了成像,并检查了它们的重新合成情况。评估了 HA 和 CS 对跨内皮电阻 (TEER) 和标记白蛋白跨单层通量的影响。通过代谢标记和液相色谱法检查了 VEGFA 和 VEGFC 对糖胺聚糖 (GAG) 产生和电荷特性的影响。使用 Alcian Blue 定量测定 GAG 脱落。通过实时 PCR 检查 NDST2 的表达。GEnC 在糖萼中表达 HA 和 CS。CS 对离子 (TEER) 和蛋白质跨单层通量都有屏障作用;HA 的作用有限。VEGFC 促进 HA 的合成,并增加合成 GAG 的电荷密度。相比之下,VEGFA 诱导带电荷的 GAG 脱落。CS 在限制大分子跨 GEnC 单层通量方面发挥作用,VEGFA 和 VEGFC 以不同的方式调节 GEnC 中 GAG 的合成、电荷和脱落。这些观察结果对肾小球和其他微血管床内皮屏障调节具有重要意义。

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