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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Nicorandil improves electrical remodelling, leading to the prevention of electrically induced ventricular tachyarrhythmia in a mouse model of desmin-related cardiomyopathy
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Nicorandil improves electrical remodelling, leading to the prevention of electrically induced ventricular tachyarrhythmia in a mouse model of desmin-related cardiomyopathy

机译:尼古兰地改善电重构,从而在与结蛋白相关的心肌病的小鼠模型中预防电诱发的室性心律失常

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Summary: Transgenic (TG) mice overexpressing an arg120gly missense mutation in heat shock protein B5 (HSPB5; i.e. R120G TG mice) exhibit desmin-related cardiomyopathy. Recently, the cardioprotective effect of nicorandil has been shown to prolong the survival of R120G TG mice. However, whether the TG mice exhibit ventricular arrhythmias and whether nicorandil can inhibit these arrhythmias remain unknown. In the present study we examined the effects of chronic nicorandil administration on ventricular electrical remodelling and arrhythmias in R120G TG mice. Mice were administered nicorandil (15 mg/kg per day) or vehicle (water) orally from 5 to 30 weeks of age. Electrocardiograms (ECG) and optical action potentials were recorded from R120G TG mouse hearts. In addition, the expression of ventricular connexin 43 and the cardiac Na+ channel Nav1.5 was examined in TG mice. All ECG parameters tested were prolonged in R120G TG compared with non-transgenic (NTG) mice. Nicorandil improved the prolonged P, PQ and QRS intervals in R120G TG mice. Interestingly, impulse conduction slowing and increases in the expression of total and phosphorylated connexin 43 and Nav1.5 were observed in ventricles from R120G TG compared with NTG mice. Nicorandil improved ventricular impulse conduction slowing and normalized the increased protein expression levels of total and phosphorylated connexin 43, but not of Nav1.5, in R120G TG mouse hearts. Electrical rapid pacing at the ventricle induced ventricular tachyarrhythmias (VT) in six of eight R120G TG mouse hearts, but not in any of the eight nicorandil-treated R120G TG mouse hearts (P 0.05). These findings demonstrate that nicorandil inhibits cardiac electrical remodelling and that the prevention of VT by nicorandil is associated with normalization of connexin 43 expression in this model.
机译:摘要:在热休克蛋白B5中过表达arg120gly错义突变的转基因(TG)小鼠(HSPB5;即R120G TG小鼠)表现出结蛋白相关性心肌病。近来,已显示尼可地尔的心脏保护作用可延长R120G TG小鼠的存活。但是,TG小鼠是否表现出室性心律失常,以及尼可地尔是否可以抑制这些心律失常仍然未知。在本研究中,我们检查了慢性尼古地尔给药对R120G TG小鼠心室电重构和心律不齐的影响。从5至30周龄给小鼠口服尼可地尔(每天15 mg / kg)或赋形剂(水)。从R120G TG小鼠心脏记录心电图(ECG)和光学动作电位。另外,在TG小鼠中检查了心室连接蛋白43和心脏Na +通道Nav1.5的表达。与非转基因(NTG)小鼠相比,R120G TG中所有测试的ECG参数均得到延长。尼古兰地改善了R120G TG小鼠的P,PQ和QRS间隔延长。有趣的是,与NTG小鼠相比,在R120G TG的心室中观察到冲动传导减慢,总和磷酸化连接蛋白43和Nav1.5的表达增加。尼古兰地改善了R120G TG小鼠心脏中总的和磷酸化的连接蛋白43的心室冲动传导减慢,并使增加的总蛋白表达水平和磷酸化的连接蛋白43正常化。在八个R120G TG小鼠心脏中的六个心脏中,在心室引起的心室快速性心律失常(VT)上进行快速电起搏,但在经尼可地尔治疗的八个R120G TG小鼠心脏中,却没有一个在心脏中快速起搏(P <0.05)。这些发现表明,尼可地尔抑制心脏电重构,并且尼可地尔预防室速与该模型中连接蛋白43表达的正常化有关。

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