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Subcellular Ca2+ alternans represents a novel mechanism for the generation of arrhythmogenic Ca2+ waves in cat atrial myocytes

机译:亚细胞Ca2 +交替蛋白代表猫心房肌细胞中产生心律失常的Ca2 +波的新机制

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摘要

Ca2+ alternans is a potentially arrhythmogenic beat-to-beat alternation of the amplitude of the action potential-induced [Ca2+]i transient in cardiac myocytes. Despite its pathophysiological significance the cellular mechanisms underlying Ca2+ alternans are poorly understood. Recent evidence, however, points to the modulation of Ca2+-induced Ca2+ release (CICR) from the sarcoplasmic reticulum (SR) by localized alterations in energy metabolism as an important determinant of Ca2+ alternans. We therefore studied the subcellular properties of Ca2+ alternans in field-stimulated cat atrial myocytes employing fast two-dimensional fluorescence confocal microscopy. Ca2+ alternans was elicited by an increase in stimulation frequency or by metabolic interventions targeting glycolysis. Marked subcellular variations in the time of onset, the magnitude, and the phase of alternans were observed. Longitudinal and transverse gradients of Ca2+ alternans were found as well as neighbouring subcellular regions alternating out-of-phase. Moreover, focal inhibition of glycolysis resulted in spatially restricted Ca2+ alternans. When two adjacent regions within a myocyte alternated out-of-phase, steep [Ca2+]i gradients developed at their border giving rise to delayed propagating Ca2+ waves. The results demonstrate that Ca2+ alternans is a subcellular phenomenon caused by modulation of SR Ca2+ release, which is mediated, at least in part, by local inhibition of energy metabolism. The generation of arrhythmogenic Ca2+ waves by subcellular variations in the phase of Ca2+ alternans represents a novel mechanism for the development of atrial disrhythmias.
机译:Ca 2 + 交替糖是心肌细胞中动作电位诱导的[Ca 2 + ] i瞬变幅度的潜在心律失常搏动。尽管其病理生理学意义,对Ca 2 + 交替蛋白的细胞机制了解甚少。然而,最近的证据表明,Ca 2 + 引起的Ca 2 + 从肌浆网(SR)释放的调节是通过能量代谢的局部改变来实现的。 Ca 2 + 交替蛋白的重要决定因素。因此,我们使用快速二维荧光共聚焦显微镜研究了田间刺激的猫房性心肌细胞中Ca 2 + 交替糖的亚细胞特性。 Ca 2 + 交替糖是由于刺激频率增加或针对糖酵解的代谢干预引起的。观察到亚细胞发生的时间,幅度和相位明显的亚细胞变化。发现Ca 2 + 交替蛋白的纵向和横向梯度,以及相邻的亚细胞区域异相交替。此外,糖酵解的局灶抑制导致空间限制的Ca 2 + 交替糖。当心肌细胞内的两个相邻区域异相交替时,陡峭的[Ca 2 + ] i梯度在其边界处形成,从而引起延迟传播的Ca 2 + 波。结果表明,Ca 2 + 交替糖是一种亚细胞现象,是由SR Ca 2 + 释放的调节引起的,这种释放至少部分是由能量的局部抑制引起的。代谢。 Ca 2 + alternans阶段亚细胞变异导致心律失常性Ca 2 + 波的产生代表了心律失常发展的新机制。

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