Endothelial contractile cytoskeleton and microvascular permeability.

Qiang Shen, Mack H Wu, Sarah Y Yuan
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引用次数: 48

Abstract

Microvascular barrier dysfunction represents a significant problem in clinical conditions associated with trauma, burn, sepsis, acute respiratory distress syndrome, ischemia-reperfusion injury, and diabetic retinopathy. An important cellular mechanism underlying microvascular leakage is the generation of contractile force from the endothelial cytoskeleton, which counteracts cell-cell and cell-matrix adhesions leading to paracellular hyperpermeability. In this review, we present recent experimental evidence supporting the critical role of MLCK-activated, RhoA/ROCK-regulated contractile cytoskeleton in endothelial permeability response to inflammatory and thrombotic stimuli arising from thermal injury, activated neutrophils, vascular endothelial growth factor, and fibrinogen degradation products. Further understanding the molecular basis of microvascular barrier structure and function would contribute to the development of novel therapeutic targets for treating circulatory disorders and vascular injury.

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内皮细胞收缩骨架和微血管通透性。
微血管屏障功能障碍是与创伤、烧伤、败血症、急性呼吸窘迫综合征、缺血再灌注损伤和糖尿病视网膜病变相关的临床疾病中的一个重要问题。微血管渗漏的一个重要细胞机制是内皮细胞骨架产生收缩力,这抵消了细胞间和细胞基质的粘附,导致细胞旁高通透性。在这篇综述中,我们提出了最近的实验证据,支持mlck激活的、RhoA/ rock调节的收缩细胞骨架在热损伤引起的炎症和血栓刺激、活化的中性粒细胞、血管内皮生长因子和纤维蛋白原降解产物的内皮通透性反应中的关键作用。进一步了解微血管屏障结构和功能的分子基础,将有助于开发治疗循环疾病和血管损伤的新靶点。
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