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首页> 外文期刊>Basic Research in Cardiology >Proarrhythmia in a non-failing murine model of cardiac-specific Na+/Ca2+ exchanger overexpression: whole heart and cellular mechanisms
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Proarrhythmia in a non-failing murine model of cardiac-specific Na+/Ca2+ exchanger overexpression: whole heart and cellular mechanisms

机译:心脏特异性Na + / Ca 2 + 交换子过表达的非失败鼠模型中的心律失常:全心和细胞机制

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The cardiac Na+/Ca2+ exchanger (NCX) generates an inward electrical current during SR-Ca2+ release, thus possibly promoting afterdepolarizations of the action potential (AP). We used transgenic mice 12.5 weeks or younger with cardiomyocyte-directed overexpression of NCX (NCX-Tg) to study the proarrhythmic potential and mechanisms of enhanced NCX activity. NCX-Tg exhibited normal echocardiographic left ventricular function and heart/body weight ratio, while the QT interval was prolonged in surface ECG recordings. Langendorff-perfused NCX-Tg, but not wild-type (WT) hearts, developed ventricular tachycardia. APs and ionic currents were measured in isolated cardiomyocytes. Cell capacitance was unaltered between groups. APs were prolonged in NCX-Tg versus WT myocytes along with voltage-activated K+ currents (Kv) not being reduced but even increased in amplitude. During abrupt changes in pacing cycle length, early afterdepolarizations (EADs) were frequently recorded in NCX-Tg but not in WT myocytes. Next to EADs, delayed afterdepolarizations (DAD) triggering spontaneous APs (sAPs) occurred in NCX-Tg but not in WT myocytes. To test whether sAPs were associated with spontaneous Ca2+ release (sCR), Ca2+ transients were recorded. Despite the absence of sAPs in WT, sCR was observed in myocytes of both genotypes suggesting a facilitated translation of sCR into DADs in NCX-Tg. Moreover, sCR was more frequent in NCX-Tg as compared to WT. Myocardial protein levels of Ca2+-handling proteins were not different between groups except the ryanodine receptor (RyR), which was increased in NCX-Tg versus WT. We conclude that NCX overexpression is proarrhythmic in a non-failing environment even in the absence of reduced KV. The underlying mechanisms are: (1) occurrence of EADs due to delayed repolarization; (2) facilitated translation from sCR into DADs; (3) proneness to sCR possibly caused by altered Ca2+ handling and/or increased RyR expression.
机译:心脏Na + / Ca 2 + 交换器(NCX)在SR-Ca 2 + 释放期间产生内向电流,因此可能促进去极化动作电位(AP)。我们使用12.5周岁或更年轻且具有心肌细胞定向NCX过表达(NCX-Tg)的转基因小鼠来研究心律失常的潜力和增强NCX活性的机制。 NCX-Tg表现出正常的超声心动图左心室功能和心脏/体重比,而在表面ECG记录中QT间隔延长。 Langendorff灌注的NCX-Tg,但不是野生型(WT)心脏,发展为室性心动过速。在分离的心肌细胞中测量AP和离子电流。组之间的单元电容不变。与WT心肌细胞相比,AP在NCX-Tg中的时间延长,而电压激活的K + 电流(K v )并未降低,但幅度甚至增加。在起搏周期长度的突然变化期间,经常在NCX-Tg中记录早期的去极化(EAD),而在WT心肌细胞中却没有。在EAD旁边,触发自发AP(sAP)的延迟后去极化(DAD)发生在NCX-Tg中,但未发生在WT心肌细胞中。为了测试sAP是否与自发的Ca 2 + 释放(sCR)相关,记录了Ca 2 + 的瞬时变化。尽管WT中不存在sAP,但在两种基因型的肌细胞中均观察到了sCR,这表明在NCX-Tg中sCR易于翻译成DAD。此外,与WT相比,NCX-Tg中sCR更为频繁。 Ca 2 + 处理蛋白的心肌蛋白水平在两组之间没有区别,除了ryanodine受体(RyR)在NCX-Tg中相对于WT有所增加。我们得出的结论是,即使在K V 降低的情况下,NCX过表达在非失败环境中也是心律失常的。潜在的机制是:(1)由于延迟复极化导致EAD的发生; (2)促进了从sCR到DAD的翻译; (3)Ca 2 + 处理方式的改变和/或RyR表达的增加可能导致sCR的发生。

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