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电紧张性负荷触发心室复极电流Ito的重塑。

Electrotonic load triggers remodeling of repolarizing current Ito in ventricle.

作者信息

Libbus Imad, Wan Xiaoping, Rosenbaum David S

机构信息

The Heart and Vascular Research Center and Departments of Medicine and Biomedical Engineering, MetroHealth Campus, Case Western Reserve University, Cleveland, Ohio 44109-1998, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2004 May;286(5):H1901-9. doi: 10.1152/ajpheart.00581.2003. Epub 2004 Jan 8.

Abstract

A change in activation sequence electrically remodels ventricular myocardium, causing persistent changes in repolarizing currents (T-wave memory). However, the underlying mechanism for triggering activation sequence-dependent remodeling is unknown. Optical action potentials were mapped with high resolution from the epicardial surface of the arterially perfused canine wedge preparation (n = 23) during 30 min of baseline endocardial stimulation, followed by 40 min of epicardial stimulation, and, finally, restoration of endocardial stimulation. Immediately after the change from endocardial to epicardial stimulation, phase 1 notch amplitude of epicardial cells was attenuated by 74 +/- 8% (P < 0.001) compared with baseline and continued to diminish during the period of epicardial pacing, suggesting progressive remodeling of the transient outward current (Ito). When endocardial pacing was restored, notch amplitude did not immediately recover but remained attenuated by 23 +/- 10% (P < 0.001), also consistent with a remodeling effect. Peak Ito current measured from isolated epicardial myocytes changed by 12 +/- 4% (P < 0.025), providing direct evidence for Ito remodeling occurring on a surprisingly short time scale. The mechanism for triggering remodeling of Ito was a significant reduction (by 14 +/- 4%, P < 0.001) of upstroke amplitude in epicardial cells during epicardial stimulation. Reduction in upstroke amplitude during epicardial pacing was explained by electrotonic load on epicardial cells by fully repolarized downstream endocardial cells. These data suggest a novel mechanism for triggering electrical remodeling in the ventricle. Electrotonic load imposed by a change in activation sequence reduces upstroke amplitude, which, in turn, attenuates Ito according to its known voltage-dependent properties, triggering downregulation of current.

摘要

激活顺序的改变会对心室心肌进行电重塑,导致复极电流发生持续性变化(T波记忆)。然而,触发依赖于激活顺序的重塑的潜在机制尚不清楚。在基线心内膜刺激30分钟期间,从动脉灌注犬楔形标本(n = 23)的心外膜表面以高分辨率记录光学动作电位,随后进行40分钟的心外膜刺激,最后恢复心内膜刺激。从心内膜刺激改为心外膜刺激后,心外膜细胞的1期切迹幅度与基线相比降低了74±8%(P < 0.001),并在进行心外膜起搏期间持续减小,提示瞬时外向电流(Ito)发生了进行性重塑。当恢复心内膜起搏时,切迹幅度并未立即恢复,而是仍降低了23±10%(P < 0.001),这也与重塑效应一致。从分离的心外膜心肌细胞测量的Ito电流峰值变化了12±4%(P < 0.025),为Ito在惊人短的时间尺度上发生重塑提供了直接证据。触发Ito重塑的机制是在心外膜刺激期间心外膜细胞的除极幅度显著降低(降低14±4%,P < 0.001)。心外膜起搏期间除极幅度的降低是由完全复极的下游心内膜细胞对心外膜细胞的电紧张负荷所解释的。这些数据提示了一种触发心室电重塑的新机制。激活顺序改变所施加的电紧张负荷降低了除极幅度,而除极幅度又根据其已知的电压依赖性特性减弱Ito,从而触发电流的下调。

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