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TRPM7 regulates angiotensin II-induced sinoatrial node fibrosis in sick sinus syndrome rats by mediating Smad signaling

机译:TRPM7通过介导Smad信号传导调节病态窦房结综合征大鼠的血管紧张素II诱导的窦房结纤维化

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摘要

Sinoatrial node fibrosis is involved in the pathogenesis of sinus sick syndrome (SSS). Transient receptor potential (TRP) subfamily M member 7 (TRPM7) is implicated in cardiac fibrosis. However, the mechanisms underlying the regulation of sinoatrial node (SAN) fibrosis in SSS by TRPM7 remain unknown. The aim of this study was to investigate the role of angiotensin II (Ang II)/TRPM7/Smad pathway in the SAN fibrosis in rats with SSS. The rat SSS model was established with sodium hydroxide pinpoint pressing permeation. Forty-eight rats were randomly divided into six groups: normal control (ctrl), sham operation (sham), postoperative 1-, 2-, 3-, and 4-week SSS, respectively. The tissue explant culture method was used to culture cardiac fibroblasts (CFs) from rat SAN tissues. TRPM7 siRNA or encoding plasmids were used to knock down or overexpress TRPM7. Collagen (Col) distribution in SAN and atria was assessed using PASM–Masson staining. Ang II, Col I, and Col III levels in serum and tissues or in CFs were determined by ELISA. TRPM7, smad2 and p-smad2 levels were evaluated by real-time PCR, and/or western blot and immunohistochemistry. SAN and atria in rats of the SSS groups had more fibers and higher levels of Ang II, Col I and III than the sham rats. Similar findings were obtained for TRPM7 and pSmad2 expression. In vitro, Ang II promoted CFs collagen synthesis in a dose-dependent manner, and potentiated TRPM7 and p-Smad2 expression. TRPM7 depletion inhibited Ang II-induced p-Smad2 expression and collagen synthesis in CFs, whereas increased TRPM7 expression did the opposite. SAN fibrosis is regulated by the Ang II/TRPM7/Smad pathway in SSS, indicating that TRPM7 is a potential target for SAN fibrosis therapy in SSS.
机译:窦房结纤维化与窦病综合征(SSS)的发病机制有关。瞬时受体电位(TRP)亚家族M成员7(TRPM7)与心脏纤维化有关。然而,TRPM7调节SSS中窦房结(SAN)纤维化的潜在机制仍然未知。这项研究的目的是调查血管紧张素II(Ang II)/ TRPM7 / Smad途径在SSS大鼠SAN纤维化中的作用。用氢氧化钠针尖加压渗透建立大鼠SSS模型。 48只大鼠随机分为六组:正常对照组(ctrl),假手术(sham),术后1、2、3、4周SSS。组织外植体培养方法用于培养大鼠SAN组织中的心脏成纤维细胞(CF)。 TRPM7 siRNA或编码质粒用于敲低或过表达TRPM7。使用PASM-Masson染色评估SAN和心房中胶原(Col)的分布。通过ELISA测定血清和组织中或CF中的Ang II,Col I和Col III水平。通过实时PCR和/或蛋白质印迹和免疫组化评估TRPM7,smad2和p-smad2水平。与假手术组相比,SSS组大鼠的SAN和心房具有更多的纤维和更高的Ang II,Col I和III水平。对于TRPM7和pSmad2表达获得了类似的发现。在体外,Ang II以剂量依赖性方式促进CFs胶原蛋白的合成,并增强TRPM7和p-Smad2的表达。 TRPM7耗竭抑制Ang II诱导的CF中的p-Smad2表达和胶原蛋白合成,而增加的TRPM7表达则相反。 SAN纤维化受SSS中的Ang II / TRPM7 / Smad途径调控,表明TRPM7是SSS中SAN纤维化治疗的潜在靶标。

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