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Enhanced Ryanodine Receptor-Mediated Calcium Leak Determines Reduced Sarcoplasmic Reticulum Calcium Content in Chronic Canine Heart Failure

机译:增强的Ryanodine受体介导的钙泄漏确定了慢性犬心力衰竭的肌浆网钙含量降低

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摘要

In this study, we investigated the role of elevated sarcoplasmic reticulum (SR) Ca2+ leak through ryanodine receptors (RyR2s) in heart failure (HF)-related abnormalities of intracellular Ca2+ handling, using a canine model of chronic HF. The cytosolic Ca2+ transients were reduced in amplitude and slowed in duration in HF myocytes compared with control, changes paralleled by a dramatic reduction in the total SR Ca2+ content. Direct measurements of [Ca2+]SR in both intact and permeabilized cardiac myocytes demonstrated that SR luminal [Ca2+] is markedly lowered in HF, suggesting that alterations in Ca2+ transport rather than fractional SR volume reduction accounts for the diminished Ca2+ release capacity of SR in HF. SR Ca2+ ATPase (SERCA2)-mediated SR Ca2+ uptake rate was not significantly altered, and Na+/Ca2+ exchange activity was accelerated in HF myocytes. At the same time, SR Ca2+ leak, measured directly as a loss of [Ca2+]SR after inhibition of SERCA2 by thapsigargin, was markedly enhanced in HF myocytes. Moreover, the reduced [Ca2+]SR in HF myocytes could be nearly completely restored by the RyR2 channel blocker ruthenium red. The effects of HF on cytosolic and SR luminal Ca2+ signals could be reasonably well mimicked by the RyR2 channel agonist caffeine. Taken together, these results suggest that RyR2-mediated SR Ca2+ leak is a major factor in the abnormal intracellular Ca2+ handling that critically contributes to the reduced SR Ca2+ content of failing cardiomyocytes.
机译:在这项研究中,我们使用慢性HF犬模型研究了通过雷诺碱受体(RyR2s)引起的肌浆网(SR)Ca2 +泄漏在心力衰竭(HF)相关的细胞内Ca2 +处理异常中的作用。与对照组相比,HF心肌细胞的胞浆Ca2 +瞬变幅度减小,持续时间减慢,总SR Ca2 +含量显着降低。在完整的和透化的心肌细胞中直接测量[Ca2 +] SR都表明HF的SR腔[Ca2 +]明显降低,这表明Ca2 +转运的改变而不是部分SR体积减小导致HF中SR的Ca2 +释放能力降低。 SR Ca2 + ATPase(SERCA2)介导的SR Ca2 +摄取率没有显着改变,并且在HF心肌细胞中Na + / Ca2 +交换活性被加速。同时,通过毒胡萝卜素抑制SERCA2后[Ca2 +] SR的损失直接测量的SR Ca2 +泄漏在HF心肌细胞中明显增强。此外,HF心肌细胞中还原的[Ca2 +] SR可以被RyR2通道阻滞剂钌红几乎完全还原。 RyR2通道激动剂咖啡因可以合理地模拟HF对胞质和SR内腔Ca2 +信号的影响。综上所述,这些结果表明,RyR2介导的SR Ca2 +泄漏是异常细胞内Ca2 +处理的主要因素,这对导致衰竭的心肌细胞的SR Ca2 +含量降低起了关键作用。

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