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克仑特罗通过上调瞬时受体电位通道-3 预防机械去负荷诱导的心肌萎缩。

Clenbuterol Prevents Mechanical Unloading-Induced Myocardial Atrophy via Upregulation of Transient Receptor Potential Channel-3.

机构信息

Department of Cardiovascular Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology.

Department of Otorhinolaryngology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology.

出版信息

Int Heart J. 2023;64(5):901-909. doi: 10.1536/ihj.21-129.

Abstract

Left ventricular assist device in combination with clenbuterol has been demonstrated to significantly improve heart function in patients with advanced heart failure. However, the roles of clenbuterol in mechanical unloading and its underlying mechanism are poorly understood. A rat abdominal heart transplantation model has been developed to mimic mechanical unloading of the heart. The recipient rats were randomly segregated into experimental groups for the daily administration of either saline (the "Trans" group; n = 13) or clenbuterol (2 mg/kg, the "Trans + CB" group; n = 12). Another group of 10 rats served as a treatment mimic control/sham animals (the "Sham" group). All interventions were performed via intraperitoneal injections once daily for 4 weeks. The Trans group animals exhibited myocardial atrophy and dysfunction with decreased expression levels of transient receptor potential channel 3 (TRPC3) and phospholipase C-β1 (PLC-β1) at 4 weeks post-transplantation. Administration of clenbuterol improved cardiac function, prevented myocardial atrophy, and restored expression of TRPC3 and PLC-β1 in the unloaded hearts of the "Trans + CB" animals at 4 weeks post-transplantation. Silencing of the TRPC3 gene by siRNA inhibited the pro-hypertrophic effect of clenbuterol in the rat primary cardiomyocytes in vitro. Furthermore, U73122, an inhibitor of the PLC-β1/diacylglycerol (DAG) pathway, significantly attenuated clenbuterol-induced upregulation of TRPC3 in cardiomyocytes. These findings suggest that the anti-atrophic effect of clenbuterol may be dependent on the upregulation of TRPC3 through the activation of the PLC-β1/DAG pathway during mechanical unloading. The results of our study reveal a potential target for the prevention and treatment of mechanical unloading-induced myocardial atrophy.

摘要

左心室辅助装置与克仑特罗联合使用已被证明可显著改善晚期心力衰竭患者的心脏功能。然而,克仑特罗在机械卸载中的作用及其潜在机制尚不清楚。已建立大鼠腹部心脏移植模型来模拟心脏的机械卸载。受体大鼠被随机分为实验组,每天接受生理盐水(“移植”组;n = 13)或克仑特罗(2 mg/kg,“移植+CB”组;n = 12)的治疗。另一组 10 只大鼠作为治疗模拟对照/假动物(“假手术”组)。所有干预均通过腹腔注射每天一次进行,持续 4 周。移植后 4 周,“移植”组动物表现出心肌萎缩和功能障碍,瞬时受体电位通道 3(TRPC3)和磷酯酶 C-β1(PLC-β1)的表达水平降低。给予克仑特罗可改善心脏功能,防止心肌萎缩,并在移植后 4 周恢复“移植+CB”动物卸载心脏中 TRPC3 和 PLC-β1 的表达。siRNA 沉默 TRPC3 基因可抑制克仑特罗在大鼠原代心肌细胞中的促肥大作用。此外,PLC-β1/二酰基甘油(DAG)途径的抑制剂 U73122 可显著减弱克仑特罗诱导的心肌细胞中 TRPC3 的上调。这些发现表明,克仑特罗的抗萎缩作用可能依赖于机械卸载过程中通过激活 PLC-β1/DAG 途径上调 TRPC3。我们的研究结果揭示了一种预防和治疗机械卸载引起的心肌萎缩的潜在靶点。

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