首页> 外文会议>ASME summer bioengineering conference;SBC2012 >HEMODYNAMIC SHEAR REGULATES INTERCELLULAR FORCES AND PERMEABILITY OF ENDOTHELIAL CELL MONOLAYERS
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HEMODYNAMIC SHEAR REGULATES INTERCELLULAR FORCES AND PERMEABILITY OF ENDOTHELIAL CELL MONOLAYERS

机译:血液动力学剪切调节内皮细胞的细胞间力和渗透性。

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In the cardiovascular system, the flow of blood within the complex vascular network creates hemodynamic shear forces experienced by cells. Situated between the circulating blood and the bulk vascular tissue, the endothelium is a cell monolayer acting as a barrier that protects the underlying arterial tissue. Shear forces have been seen to interact with and regulate endothelial cells through mechanotransduction induced cytoskeletal changes within the cell [1]. Shear forces can be beneficial in cases of laminar flow, which are thought to be atheroprotective by aligning and organizing endothelial cells [2]. However, disturbances to a smooth flow field, caused by vessel bifurcations or obstructions like an implanted stent or a bulging atherosclerotic lesion, can cause recirculation zones to form downstream. In these flow regions, detrimental monolayer remodeling occurs which breaks down the endothelial barrier function [3].
机译:在心血管系统中,复杂血管网络内的血液流动会产生细胞所经历的血液动力剪切力。内皮位于循环血液和大血管组织之间,是一层细胞单层,可作为保护基础动脉组织的屏障。已经发现,剪切力通过机械转导诱导的细胞内细胞骨架变化与内皮细胞相互作用并调节内皮细胞[1]。在层流的情况下,剪切力可能是有益的,层流被认为通过排列和组织内皮细胞具有抗动脉粥样硬化作用[2]。但是,由于血管分叉或阻塞(如植入的支架或膨出的动脉粥样硬化病变)所引起的对平滑流场的干扰可能会导致在下游形成回流区。在这些血流区域,会发生有害的单层重塑,从而破坏内皮屏障功能[3]。

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