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Channel Activity of Cardiac Ryanodine Receptors (RyR2) Determines Potency and Efficacy of Flecainide and R-Propafenone against Arrhythmogenic Calcium Waves in Ventricular Cardiomyocytes

机译:心脏Ryanodine受体(RyR2)的通道活性决定了氟卡尼和R-普罗帕酮对心室性心律失常的钙心律失常钙波的效力和功效。

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摘要

Flecainide blocks ryanodine receptor type 2 (RyR2) channels in the open state, suppresses arrhythmogenic Ca2+ waves and prevents catecholaminergic polymorphic ventricular tachycardia (CPVT) in mice and humans. We hypothesized that differences in RyR2 activity induced by CPVT mutations determines the potency of open-state RyR2 blockers like flecainide (FLEC) and R-propafenone (RPROP) against Ca2+ waves in cardiomyocytes. Using confocal microscopy, we studied Ca2+ sparks and waves in isolated saponin-permeabilized ventricular myocytes from two CPVT mouse models (Casq2-/-, RyR2-R4496C+/-), wild-type (c57bl/6, WT) mice, and WT rabbits (New Zealand white rabbits). Consistent with increased RyR2 activity, Ca2+ spark and wave frequencies were significantly higher in CPVT compared to WT mouse myocytes. We next obtained concentration-response curves of Ca2+ wave inhibition for FLEC, RPROP (another open-state RyR2 blocker), and tetracaine (TET) (a state-independent RyR2 blocker). Both FLEC and RPROP inhibited Ca2+ waves with significantly higher potency (lower IC50) and efficacy in CPVT compared to WT. In contrast, TET had similar potency in all groups studied. Increasing RyR2 activity of permeabilized WT myocytes by exposure to caffeine (150 µM) increased the potency of FLEC and RPROP but not of TET. RPROP and FLEC were also significantly more potent in rabbit ventricular myocytes that intrinsically exhibit higher Ca2+ spark rates than WT mouse ventricular myocytes. In conclusion, RyR2 activity determines the potency of open-state blockers FLEC and RPROP for suppressing arrhythmogenic Ca2+ waves in cardiomyocytes, a mechanism likely relevant to antiarrhythmic drug efficacy in CPVT.
机译:Flecainide可以在开放状态下阻断2型RyanRine受体通道,抑制致心律失常的Ca 2 + 波,并预防小鼠和人类的儿茶酚胺能性多形性室性心动过速(CPVT)。我们假设CPVT突变诱导的RyR2活性差异决定了开立状态的RyR2阻断剂(如氟卡尼(FLEC)和R-普罗帕酮(RPROP))对心肌细胞中Ca 2 + 波的效力。使用共聚焦显微镜,我们研究了来自两个CPVT小鼠模型(Casq2 -/-,RyR2-R4496C 的分离的皂素透化的心室肌细胞中Ca 2 + 的火花和波动) (+/- ),野生型(c57bl / 6,WT)小鼠和WT兔(新西兰白兔)。与RyR2活性增加相一致,CPWT中的Ca 2 + 火花和波动频率明显高于野生型小鼠心肌细胞。接下来,我们获得了FLEC,RPROP(另一种开放状态的RyR2阻滞剂)和丁卡因(TET)(一种状态独立的RyR2阻滞剂)对Ca 2 + 抑制的浓度-响应曲线。与WT相比,FLEC和RPROP均抑制CPVT的Ca 2 + 波具有显着更高的效力(IC50更低)和功效。相比之下,TET在所有研究组中的效价相似。通过暴露于咖啡因(150 µM)来增加通透的WT心肌细胞的RyR2活性,可以提高FLEC和RPROP的效力,但不能提高TET的效力。 RPROP和FLEC在兔心室肌细胞中的效力也显着增强,其固有的Ca 2 + 发火花率高于WT小鼠心室肌细胞。总之,RyR2的活性决定了开放状态阻滞剂FLEC和RPROP抑制心肌细胞中心律失常的Ca 2 + 波的能力,这可能与CPVT中的抗心律失常药物功效有关。

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