Arrhythmogenic mechano-electric heterogeneity in the long-QT syndrome

被引:33
|
作者
ter Bekke, Rachel M. A. [1 ]
Volders, Paul G. A. [1 ]
机构
[1] Maastricht Univ, Med Ctr, Cardiovasc Res Inst Maastricht, Dept Cardiol, NL-6202 AZ Maastricht, Netherlands
关键词
Long-QT syndrome; Electromechanical window; Calcium; Aftercontractions; Torsades de pointes; Ventricular arrhythmia; TORSADE-DE-POINTES; ACTION-POTENTIAL PROLONGATION; LIFE-THREATENING ARRHYTHMIAS; STRETCH-INDUCED ARRHYTHMIAS; RAT VENTRICULAR MYOCYTES; SELECTIVE CATION CHANNEL; TRANSIENT INWARD CURRENT; WALL-MOTION ABNORMALITY; ACTIVATED ION CHANNELS; EARLY AFTERDEPOLARIZATIONS;
D O I
10.1016/j.pbiomolbio.2012.07.007
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Since the first linkage of the long-QT syndrome to the Harvey ras-1 gene in 1991 ample research has been performed to decipher the molecular-biophysical basis of congenital repolarization defects and the electrophysiological mechanisms of torsades-de-pointes arrhythmias in this condition. Mechanistic knowledge is mostly derived from cellular experiments (cardiac myocytes, cultured cells), ventricular tissue (including arterially-perfused wedge) preparations and Langendorff-perfused hearts, with relatively little information from in-vivo animal models, and even more scant intact human-heart investigations. Until now, much emphasis has been put on purely membrane-related pathways of arrhythmia initiation with a prominent role for spatiotemporal dispersion of repolarization, early after-depolarizations and reentrant excitation. Here, we review additional factors that influence the onset of torsades de pointes, notably myocardial Ca2+ (over) loading and spontaneous SR Ca2+ release, occurring particularly during intense sympathetic nervous stimulation and dynamic cycle-length changes. Recent tissue and in-vivo data suggest that spontaneous SR Ca2+ release, underlying aftercontractions in the isolated myocyte, may organize to local myocardial Ca2+ waves and after contractions in the intact heart. In the setting of prolonged repolarization and a negative electromechanical window, these spontaneous [Ca2+](cyt)-based events (which often arise during early diastole) may exaggerate repolarization instability via [Ca2+](cyt)-activated inward membrane currents and, as we postulate, via mechano-sensitive ion currents. Future long-QT research should focus on the intact beating heart with preserved autonomic input to examine these arrhythmogenic mechanisms. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:347 / 358
页数:12
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