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首页> 外文期刊>Antioxidants and redox signalling >Redox regulation of endothelial canonical transient receptor potential channels.
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Redox regulation of endothelial canonical transient receptor potential channels.

机译:内皮经典瞬态受体电位通道的氧化还原调节。

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摘要

The endothelium is a highly dynamic structure lining the inside of blood vessels that exhibits physical and chemical properties that are critical determinants of overall vascular function. Physically, the endothelium constitutes a semipermeable barrier. Chemically, the endothelium synthesizes numerous factors such as reactive oxygen species (ROS) that can act as autocrine and paracrine signaling molecules. Oxidative stress results when ROS levels increase to levels that cause cellular injury, and, in the endothelium oxidative stress leads to barrier disruption. Endothelial barrier disruption also results from increased cytosolic calcium through store-operated calcium (SOC) entry channels. Although it is known that ROS can interact with and regulate some ion channels, relatively little is known about the interaction of these species with components of endothelial SOC entry channels, the canonical transient receptor potential (TRPC) proteins. Here we review our current understanding of ROS-mediated TRPC channel function and how it affects SOC entry and endothelial barrier disruption.
机译:内皮是位于血管内部的高度动态结构,其表现出物理和化学特性,是决定整个血管功能的关键因素。在物理上,内皮构成半透屏障。化学上,内皮合成许多因子,例如可作为自分泌和旁分泌信号分子的活性氧(ROS)。当ROS水平升高到引起细胞损伤的水平时,就会产生氧化应激,并且在内皮中,氧化应激会导致屏障破坏。内皮屏障的破坏也归因于通过储存操作钙(SOC)进入通道增加的胞质钙。尽管已知ROS可以与某些离子通道相互作用并调节某些离子通道,但是对于这些物质与内皮SOC进入通道的成分(即典型的瞬时受体电位(TRPC)蛋白)之间的相互作用了解得很少。在这里,我们回顾了我们目前对ROS介导的TRPC通道功能及其如何影响SOC进入和内皮屏障破坏的理解。

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