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Shear Stress and Cyclic Circumferential Stretch, But Not Pressure, Alter Connexin43 Expression in Endothelial Cells

机译:剪应力和循环周向拉伸,但不改变压力,改变内皮细胞中连接蛋白43的表达

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Hemodynamic forces play a critical role in atherogenesis, as evidenced by the focal pattern of development of atherosclerotic lesions. Whereas disturbed flow in the branches and curved regions of large arteries is proatherogenic, laminar flow in the straight parts of vessels is atheroprotective. In addition, hypertension and age-related changes in arterial stiffness are important risk factors of the disease. Hemodynamic forces induce various changes in the structure and function of vascular endothelium, many of which reflect alterations in gene expression. Endothelial cells are linked by gap junctions, which facilitate the propagation of electrical and chemical signals along the vascular wall. Using an in vitro perfusion system, we investigated the effects of pulsed unidirectional and oscillatory flows in combination with different levels of hydrostatic pressure and circumferential stretch on the expression of Cx43 in endothelial cells. Our results show that shear stress and circumferential stretch, but not pressure, modulate the expression of Cx43. In view of the distribution of this protein along the vascular tree, our findings provide new insights into the role of mechanical forces on gap junctional communication in regions prone to the development of atherosclerosis.
机译:血液动力在动脉粥样硬化中起关键作用,动脉粥样硬化病变发展的局灶性模式证明了这一点。大动脉的分支和弯曲区域中的紊流是促动脉粥样硬化的,而血管笔直部分中的层流是对动脉粥样硬化的保护。此外,高血压和年龄相关的动脉僵硬变化是该疾病的重要危险因素。血流动力学力引起血管内皮结构和功能的各种变化,其中许多反映基因表达的变化。内皮细胞通过间隙连接而连接,这有利于沿血管壁传播电信号和化学信号。使用体外灌注系统,我们研究了脉冲单向和振荡流与不同水平的静水压力和周向拉伸相结合对内皮细胞中Cx43表达的影响。我们的结果表明,剪切应力和周向拉伸而不是压力调节Cx43的表达。鉴于这种蛋白质沿血管树的分布,我们的发现为在动脉粥样硬化易发区域中机械力在间隙连接通讯中的作用提供了新的见解。

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