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首页> 外文期刊>Experimental and therapeutic medicine >Association between connexin 40 and potassium voltage-gated channel subfamily A member 5 expression in the atrial myocytes of patients with atrial fibrillation
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Association between connexin 40 and potassium voltage-gated channel subfamily A member 5 expression in the atrial myocytes of patients with atrial fibrillation

机译:Connexin 40和钾电压门控通道之间的关联亚家族患者在心房颤动患者的心房肌细胞中的构件5表达

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摘要

Structural and electrical remodeling within the atrium mediate the pathogenesis of atrial fibrillation (AF). Two key genes that sever a role in this remodeling are connexin 40 (Cx40) and potassium voltage-gated channel subfamily A member 5 (KCNA5), respectively. Electrical remodeling is considered to induce structural remodeling during AF. In the present study, the left atrial appendage section and atrial myocytes of patients with AF were evaluated. It was observed that Cx40 and KCNA5 mRNA (P<0.05) and protein (P<0.01) expression was significantly downregulated in AF compared with rheumatic heart disease. In addition, a positive correlation between the mRNA expression Cx40 and KCNA5 was observed in the atrial myocytes of patients with AF (P<0.05; r=0.42). The association between Cx40 and KCNA5 expression was subsequently investigated in primary cultured atrial myocytes using siRNA transfection. In atrial myocytes, downregulation of Cx40 inhibited the expression of KCNA5. Similarly, silencing of KCNA5 suppressed the expression of Cx40. These results indicate that synergistic regulation may occur between Cx40 and KCNA5 expression. Furthermore, the combined effects of electrical and structural remodeling in the atrial myocytes of patients with AF may contribute to the pathogenesis of AF.
机译:庭院内的结构和电气重塑介导心房颤动的发病机制(AF)。在该重塑中切断作用的两个键基因是Connexin 40(CX40)和钾电压门控通道分别是构件5(KCNA5)。电气重塑被认为是在AF期间诱导结构重塑。在本研究中,评估AF患者的左心房阑尾部分和心房肌细胞。观察到CX40和KCNA5 mRNA(P <0.05)和蛋白质(P <0.01)表达在AG与风湿性心脏疾病中显着下调。另外,在AF的患者的心房肌细胞中观察到mRNA表达CX40和KCNA5之间的正相关(P <0.05; r = 0.42)。随后在使用siRNA转染的原发性培养的心房肌细胞中研究了CX40和KCNA5表达的关系。在心房肌细胞中,CX40的下调抑制了KCNA5的表达。类似地,KCNA5的沉默抑制了CX40的表达。这些结果表明CX40和KCNA5表达之间可能发生协同调节。此外,电气患者的心房肌细胞中电和结构重塑的组合效应可能有助于AF的发病机制。

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