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Ranolazine improves abnormal repolarization and contraction in left ventricular myocytes of dogs with heart failure by inhibiting late sodium current

机译:雷诺嗪通过抑制晚期钠电流改善心力衰竭犬左室心肌细胞的异常复极和收缩

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摘要

BackgroundVentricular repolarization and contractile function are frequently abnormal in ventricular myocytes from human failing hearts as well as canine hearts with experimentally induced heart failure (HF). These abnormalities have been attributed to dysfunction involving various steps of the excitation-contraction coupling process, leading to impaired intracellular sodium and calcium homeostasis. We previously reported that the slow inactivating component of the Na+ current (late INa) is augmented in myocytes from failing hearts, and this appears to play a significant role in abnormal ventricular myocytes repolarization and function. We tested the effect of ranolazine, a novel drug being developed to treat angina, on 1) action potential duration (APD), 2) peak transient and late INa (INaT and INaL respectively), 3) early afterdepolarizations (EADs), and 4) twitch contraction (TC) including aftercontractions and contracture.
机译:背景技术人衰竭心脏以及实验性心力衰竭(HF)的犬心脏的心室肌细胞中,室复极和收缩功能经常异常。这些异常归因于功能障碍,涉及兴奋-收缩偶联过程的各个步骤,从而导致细胞内钠和钙稳态的受损。我们先前曾报道过,Na + 电流的缓慢失活成分(晚期INa)在衰竭心脏的心肌细胞中得到增强,这似乎在异常的心室肌细胞复极化和功能中起重要作用。我们测试了雷诺嗪(一种正在开发的用于治疗心绞痛的新药)对1)动作电位持续时间(APD),2)瞬时峰值和晚期INa(分别为INaT和INaL),3)早期除极后(EADs)和4的作用)抽搐收缩(TC),包括后收缩和挛缩。

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