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血管内皮生长因子与血管通透性。

Vascular endothelial growth factors and vascular permeability.

机构信息

Microvascular Research Laboratories, Department of Physiology and Pharmacology, School of Veterinary Sciences, Bristol Heart Institute, University of Bristol, Southwell Street, Bristol, UK.

出版信息

Cardiovasc Res. 2010 Jul 15;87(2):262-71. doi: 10.1093/cvr/cvq105. Epub 2010 Apr 16.

Abstract

Vascular endothelial growth factors (VEGFs) are key regulators of permeability. The principal evidence behind how they increase vascular permeability in vivo and in vitro and the consequences of that increase are addressed here. Detailed analysis of the published literature has shown that in vivo and in vitro VEGF-mediated permeability differs in its time course, but has common involvement of many specific signalling pathways, in particular VEGF receptor-2 activation, calcium influx through transient receptor potential channels, activation of phospholipase C gamma and downstream activation of nitric oxide synthase. Pathways downstream of endothelial nitric oxide synthase appear to involve the guanylyl cyclase-mediated activation of the Rho-Rac pathway and subsequent involvement of junctional signalling proteins such as vascular endothelial cadherin and the tight junctional proteins zona occludens and occludin linked to the actin cytoskeleton. The signalling appears to be co-ordinated through spatial organization of the cascade into a signalplex, and arguments for why this may be important are considered. Many proteins have been identified to be involved in the regulation of vascular permeability by VEGF, but still the mechanisms through which these are thought to interact to control permeability are dependent on the experimental system, and a synthesis of existing data reveals that in intact vessels the co-ordination of the pathways is still not understood.

摘要

血管内皮生长因子(VEGFs)是血管通透性的主要调节因子。本文探讨了它们在体内和体外增加血管通透性的作用机制及其后果。对已发表文献的详细分析表明,体内和体外的 VEGF 介导的通透性在时程上存在差异,但涉及许多特定的信号通路,特别是 VEGF 受体-2 的激活、通过瞬时受体电位通道的钙内流、磷脂酶 C 伽马的激活以及下游的一氧化氮合酶的激活。内皮型一氧化氮合酶下游的通路似乎涉及鸟苷酸环化酶介导的 Rho-Rac 通路的激活,以及随后涉及连接信号蛋白,如血管内皮钙黏蛋白和紧密连接蛋白 zonula occludens 和 occludin,与肌动蛋白细胞骨架相连。该信号似乎通过级联反应的空间组织协调为信号复合物,并且考虑了为什么这可能很重要的论点。许多蛋白质已被确定参与 VEGF 调节血管通透性,但这些蛋白质被认为是如何相互作用以控制通透性的机制仍依赖于实验系统,对现有数据的综合分析表明,在完整的血管中,通路的协调仍然不被理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e459/2895541/4d28e41e959b/cvq10501.jpg

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