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Phenotypic switching of vascular smooth muscle cells in the ‘normal region’ of aorta from atherosclerosis patients is regulated by miR‐145

机译:miR-145调节动脉粥样硬化患者主动脉正常区域中血管平滑肌细胞的表型转换

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摘要

Switching of vascular smooth muscle cells (VSMCs) from a contractile phenotype to an adverse proliferative phenotype is a hallmark of atherosclerosis or vascular restenosis. However, the genetic modulators responsible for this switch have not been fully elucidated in humans nor have they been correlated with clinical abnormalities. This study investigated genetic mechanisms involved in phenotypic switching of VSMCs at non‐defect areas of the aorta in patients with atherosclerosis. Aortic wall samples were obtained from patients with (N = 53) and without (N = 27) atherosclerosis undergoing cardiovascular surgery. Vascular smooth muscle cell cultures were generated, and expression of microRNA‐145 (miR‐145), its target gene Kruppel‐Like Factor 5 (KLF5) and Myocardin (MYOCD, a smooth muscle‐specific transcriptional coactivator) were analysed using RT‐qPCR, along with expression of relevant proteins. Vascular smooth muscle cells were transduced with miR‐145 inhibitor and mimic to determine the effect of miR‐145 expression on VSMC proliferation. miR‐145 expression decreased while KLF5 expression increased in atherosclerotic aortas. Atherosclerotic samples and VSMCs had decreased expression of contractile markers calponin and alpha smooth muscle actin (α‐SMA) and MYOCD. miR‐145 inhibitor‐transduced VSMCs from non‐atherosclerotic patients showed decreased expression of calponin and α‐SMA and increased proliferation compared with non‐transduced controls, and these levels were close to those of atherosclerotic patients. miR‐145 mimic‐transduced VSMCs from atherosclerotic patients showed increased expression of calponin and α‐SMA and decreased proliferation compared with non‐transduced controls, and these levels were close to those found in non‐atherosclerotic patients. These data demonstrate that miR‐145 modulates the phenotypic switch of style="fixed-case">VSMCs from a contractile to a proliferative state via style="fixed-case">KLF5 and style="fixed-case">MYOCD in atherosclerosis.
机译:血管平滑肌细胞(VSMC)从收缩表型向不良增生表型的转换是动脉粥样硬化或血管再狭窄的标志。但是,尚未在人类中充分阐明引起这种转换的遗传调节剂,也未将它们与临床异常相关联。这项研究调查了动脉粥样硬化患者主动脉非缺损部位VSMC表型转换的遗传机制。主动脉壁样本取自患有(N = 53)和没有(N = 27)动脉粥样硬化的接受心血管外科手术的患者。生成了血管平滑肌细胞培养物,并使用RT-qPCR分析了microRNA-145(miR-145),其靶基因Kruppel-Like Factor 5(KLF5)和心肌素(MYOCD,一种平滑肌特异性转录共激活因子)的表达。以及相关蛋白质的表达。用miR-145抑制剂转导血管平滑肌细胞并进行模拟,以确定miR-145表达对VSMC增殖的影响。在动脉粥样硬化主动脉中,miR-145表达降低,而KLF5表达升高。动脉粥样硬化样品和VSMC的收缩标志物钙蛋白和α平滑肌肌动蛋白(α‐SMA)和MYOCD的表达降低。来自非动脉粥样硬化患者的miR‐145抑制剂转导的VSMC与未转导的对照组相比,显示出钙蛋白和α‐SMA的表达降低,并且增殖增加,并且这些水平与动脉粥样硬化患者的水平相近。与未转导的对照组相比,来自动脉粥样硬化患者的miR-145模拟转导的VSMC显示出钙蛋白和α-SMA的表达增加,并且增殖减少,这些水平与非动脉粥样硬化患者的水平相近。这些数据表明miR‐145通过 style =“ fixed-case”> KLF VSMC s的表型转换从收缩状态转变为增殖状态。 > 5和 style =“ fixed-case”> MYOCD 在动脉粥样硬化中。

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