首页> 外文期刊>European Journal of Pharmacology: An International Journal >Nicorandil normalizes prolonged repolarisation in the first transgenic rabbit model with Long-QT syndrome 1 both in vitro and in vivo.
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Nicorandil normalizes prolonged repolarisation in the first transgenic rabbit model with Long-QT syndrome 1 both in vitro and in vivo.

机译:尼古拉地尔在体外和体内均在具有Long-QT综合征1的第一个转基因兔模型中使延长的复极化正常化。

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摘要

Transgenic rabbits expressing loss-of-function pore mutants of the human gene KCNQ1 (K(v)LQT1-Y315S) have a Long QT-Syndrome 1 (LQT1) phenotype. We evaluated for the first time the effect of nicorandil, an opener of ATP-sensitive potassium channels, and of isoproterenol on cardiac action potential duration and heart rate dependent dispersion of repolarisation in transgenic LQT1 rabbits. In vivo LQT1 and littermate control were subjected to transvenous electrophysiological studies; in vitro monophasic action potentials were recorded from explanted Langendorff-perfused hearts. In vivo ventricular effective refractory periods (VERP) at the right ventricular base were significantly prolonged in LQT1 as compared to littermate control, resulting in a more pronounced VERP dispersion in LQT1. This difference in VERP dispersion between LQT1 and littermate control disappeared after infusion of nicorandil. In vitro, mean action potential durations (APD(75) and APD(90)) of LQT1 were significantly prolonged compared to littermate control at baseline. Nicorandil decreased APD(75) and APD(90) in LQT1 and littermate control at all stimulated heart rates. After adding nicorandil, the APD(90) at all hearts rates and the APD(75) at high heart rates were no longer different. Dispersion of repolarisation (APD(75) and APD(90)) was heart rate dependently decreased after nicorandil at all tested stimulation cycle lengths only in LQT1. We demonstrated phenotypic differences of LQT1 and littermate control in vivo and in vitro. Nicorandil 20mumol/l improved repolarisation abnormalities and heterogeneities in transgenic LQT1 rabbits.
机译:表达人类基因KCNQ1(K(v)LQT1-Y315S)功能丧失的孔突变体的转基因兔具有长QT综合征1(LQT1)表型。我们首次评估了尼可地尔(ATP敏感性钾通道的开放剂)和异丙肾上腺素对转基因LQT1兔心脏动作电位持续时间和心率依赖性复极分散的影响。对体内LQT1和同窝仔对照进行了静脉电生理研究;从植入的Langendorff心脏中记录了体外单相动作电位。与同窝对照相比,LQT1中右心室基部的体内心室有效不应期(VERP)显着延长,导致VERP在LQT1中的分散更加明显。输注尼可地尔后,LQT1和同窝仔对照之间的VERP分散性差异消失了。在体外,与同龄对照相比,LQT1的平均动作电位持续时间(APD(75)和APD(90))显着延长。在所有刺激的心率下,尼古兰地均会降低LQT1和同窝出生对照的APD(75)和APD(90)。加入尼可地尔后,所有心率的APD(90)和高心率的APD(75)不再相同。尼可地尔在所有测试的刺激周期长度(仅在LQT1中)后,心率依赖性地降低了复极化的分散(APD(75)和APD(90))。我们证明了LQT1和同窝幼仔对照在体内和体外的表型差异。尼古拉地20μmol/ l改善了转基因LQT1家兔的复极异常和异质性。

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