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AGING ENDOTHELIAL CELLS EXHIBIT DECREASED RESPONSE TO ATHEROPROTECTIVE SHEAR STRESS

机译:老化的内皮细胞显示出对保护性剪切应力的响应降低

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As endothelial cells (ECs) age, morphological and physiological changes occur that may alter macromolecular transport and cause subsequent disease development. ECs in atherosclerotic regions exhibit high cell turnover and high levels of oxidative stress due to transient flow patterns and low and oscillating shear stress. This leads to replicative or stress-induced senescence. Resveratrol indirectly reverses senescence-associated phenotypes via competitive inhibition of cAMP-degrading phosphodiesterases (PDEs). Elevated levels of membrane-associated cAMP activate the cyclic AMP-regulated guanosine nucleotide exchange factor Epac1 which, in turn, leads to guanosine triphosphate (GTP) binding to the small G protein Rap1. GTP bound Rap1 activates the deacetylase SIRTUIN1 (SIRT1) but also causes changes to the cortical cytoskeleton and organization of VE-cadherin mechanosensor in the endothelial junctions.
机译:随着内皮细胞(EC)的老化,会发生形态和生理变化,这些变化可能会改变大分子的运输并导致随后的疾病发展。动脉粥样硬化区域中的EC表现出高的细胞更新率和高水平的氧化应激,这是由于瞬时流动模式以及低的和振荡的剪切应力引起的。这导致复制性或应激性衰老。白藜芦醇通过竞争性抑制cAMP降解的磷酸二酯酶(PDEs)间接逆转衰老相关的表型。膜相关cAMP的水平升高会激活环AMP调节的鸟苷核苷酸交换因子Epac1,进而导致鸟苷三磷酸(GTP)与小G蛋白Rap1结合。 GTP绑定的Rap1激活脱乙酰基酶SIRTUIN1(SIRT1),但也会引起皮质细胞骨架的改变以及内皮连接处VE-钙粘着蛋白机械传感器的组织。

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