首页> 外文期刊>Microcirculation: The official journal of the Microcirculatory Society >Matrix metalloproteinase activity causes VEGFR-2 cleavage and microvascular rarefaction in rat mesentery.
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Matrix metalloproteinase activity causes VEGFR-2 cleavage and microvascular rarefaction in rat mesentery.

机译:基质金属蛋白酶活性导致大鼠肠系膜中的VEGFR-2裂解和微血管稀疏。

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A complication of the spontaneously hypertensive rat (SHR) is microvascular rarefaction, defined by the loss of microvessels. However, the molecular mechanisms involved in this process remain incompletely identified. Recent work in our laboratory suggests that matrix metalloproteinases (MMPs) may play a role by cleavage of the vascular endothelial growth factor receptor 2 (VEGFR-2). In order to further delineate the role for MMPs in microvascular rarefaction, the objective of the current study was to examine the relationship in the same tissue between MMP activity, VEGFR-2 cleavage and rarefaction. Using an in vivo microzymographic technique, we show significantly enhanced levels of MMP-1, -1/-9, -7, and -8 activities, but not MMP-2 and -3 activities, along mesenteric microvessels of the SHR compared to its normotensive control, Wistar Kyoto rat. Based on immunohistochemical methods, the SHR exhibited a decreased labeling of the extracellular, but not the intracellular, domain of VEGFR-2 along mesenteric microvessels. Chronic MMP inhibition served to attenuate VEGFR-2 cleavage and microvascular network rarefaction in the SHR mesentery. These results spatially link MMP-induced VEGFR-2 cleavage and rarefaction in the mesentery of the SHR and thus support the hypothesis that MMPs serve as regulators of microvascular dysfunction in hypertension.
机译:自发性高血压大鼠(SHR)的并发症是微血管稀疏,其定义为微血管的丢失。但是,此过程中涉及的分子机制仍未完全确定。我们实验室的最新研究表明,基质金属蛋白酶(MMP)可能通过切割血管内皮生长因子受体2(VEGFR-2)发挥作用。为了进一步描述MMP在微血管稀疏中的作用,本研究的目的是检查同一组织中MMP活性,VEGFR-2裂解与稀疏之间的关系。使用体内微酶法技术,与SHR的肠系膜微血管相比,我们显示出沿SHR的肠系膜微血管MMP-1,-1 / -9,-7和-8活性显着增强,但MMP-2和-3活性未见增强。血压正常控制,Wistar Kyoto大鼠。基于免疫组织化学方法,SHR沿肠系膜微血管的VEGFR-2胞外域标记降低,而胞内域标记降低。慢性MMP抑制作用可减轻SHR肠系膜中VEGFR-2的裂解和微血管网络的稀疏性。这些结果在空间上将MMP诱导的VEGFR-2裂解和SHR肠系膜中的稀疏联系在一起,因此支持了MMP充当高血压微血管功能障碍调节剂的假设。

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