Iyer Vivek, Roman-Campos Danilo, Sampson Kevin J, Kang Guoxin, Fishman Glenn I, Kass Robert S
Department of Pharmacology, Columbia University Medical Center, New York, NY.
Leon H. Charney Division of Cardiology, New York University School of Medicine, New York, NY.
Sci Rep. 2015 Aug 20;5:13287. doi: 10.1038/srep13287.
Long QT syndrome (LQTS) is characterized by ventricular arrhythmias and sudden cardiac death. Purkinje cells (PC) within the specialized cardiac conduction system have unique electrophysiological properties that we hypothesize may produce the primary sources of arrhythmia in heritable LQTS. LQTS type 3 (LQT3) transgenic mice harboring the ΔKPQ(+/-) mutation were crossed with Contactin2-EGFP BAC transgenic mice, which express a fluorescent reporter gene within the Purkinje fiber network. Isolated ventricular myocytes (VMs) (EGFP(-)) and PCs (EGFP(+)) from wild type and ΔKPQ mutant hearts were compared using the whole-cell patch clamp technique and microfluorimetry of calcium transients. Increased late sodium current was seen in ΔKPQ-PCs and ΔKPQ-VMs, with larger density in ΔKPQ-PCs. Marked prolongation of action potential duration of ΔKPQ-PCs was seen compared to ΔKPQ-VMs. ΔKPQ-PCs, but not ΔKPQ-VMs, exhibited frequent early afterdepolarizations, which corresponded to repetitive oscillations of intracellular calcium. Abnormalities in cell repolarization were reversed with exposure to mexiletine. We present the first direct experimental evidence that PCs are uniquely sensitive to LQT3 mutations, displaying electrophysiological behavior that is highly pro-arrhythmic.
长QT综合征(LQTS)的特征是室性心律失常和心源性猝死。心脏特殊传导系统中的浦肯野细胞(PC)具有独特的电生理特性,我们推测这些特性可能是遗传性LQTS心律失常的主要来源。将携带ΔKPQ(+/-)突变的3型长QT综合征(LQT3)转基因小鼠与Contactin2-EGFP BAC转基因小鼠杂交,后者在浦肯野纤维网络中表达荧光报告基因。使用全细胞膜片钳技术和钙瞬变的显微荧光测定法,比较了野生型和ΔKPQ突变型心脏分离出的心室肌细胞(VMs)(EGFP(-))和浦肯野细胞(PCs)(EGFP(+))。在ΔKPQ-PCs和ΔKPQ-VMs中观察到晚期钠电流增加,且在ΔKPQ-PCs中密度更大。与ΔKPQ-VMs相比,ΔKPQ-PCs的动作电位时程明显延长。ΔKPQ-PCs而非ΔKPQ-VMs表现出频繁的早期后去极化,这与细胞内钙的重复振荡相对应。暴露于美西律后,细胞复极化异常得到逆转。我们提供了首个直接实验证据,表明浦肯野细胞对LQT3突变具有独特的敏感性,表现出高度促心律失常的电生理行为。