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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Excitation-contraction coupling in human heart failure examined by action potential clamp in rat cardiac myocytes.
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Excitation-contraction coupling in human heart failure examined by action potential clamp in rat cardiac myocytes.

机译:通过大鼠心肌细胞中的动作电位钳检查了人类心力衰竭中的兴奋-收缩耦合。

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The effect of the loss of the notch in the human action potential (AP) during heart failure was examined by voltage clamping rat ventricular myocytes with human APs and recording intracellular Ca(2+) with fluorescent dyes. Loss of the notch resulted in about a 50% reduction in the initial phase of the Ca(2+) transient due to reduced ability of the L-type Ca(2+) channel to trigger release. The failing human AP increased non-uniformity of cytosolic Ca(2+), with some cellular regions failing to elicit Ca(2+)-induced Ca(2+) release from the sarcoplasmic reticulum. In addition, there was an increase in the occurrence of late Ca(2+) sparks. Monte-Carlo simulations of spark activation by L-type Ca(2+) current supported the idea that the decreased synchrony of Ca(2+) spark production associated with the loss of the notch could be explained by reduced Ca(2+) influx from open Ca(2+) channels. We conclude that the notch of the AP is critical for efficient and synchronous EC coupling and that the loss of the notch will reduce the SR Ca(2+) release in heart failure, without changes in (for example) SR Ca(2+)-ATPase uptake.
机译:通过用人AP钳夹大鼠心室心肌细胞并用荧光染料记录细胞内Ca(2+)来检查在心力衰竭期间在人类动作电位(AP)中缺口丧失的影响。由于L型Ca(2+)通道触发释放的能力降低,缺口的损失导致Ca(2+)瞬态的初始阶段减少了大约50%。失败的人类AP增加了胞质Ca(2+)的不均匀性,某些细胞区域未能引起Ca(2+)诱导的Ca(2+)从肌质网释放。此外,晚Ca(2+)火花的发生有所增加。蒙特卡洛模拟的由L型Ca(2+)电流激活的火花支持这样的想法,即与缺口损失相关的Ca(2+)火花产生的同步降低可以通过减少Ca(2+)流入来解释。从开放的Ca(2+)通道。我们得出结论,AP的切口对于有效且同步的EC耦合至关重要,并且切口的损失将减少心力衰竭时SR Ca(2+)的释放,而无需改变(例如)SR Ca(2+) -ATP酶摄取。

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