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首页> 外文期刊>American Journal of Physiology >Acidosis and ischemia increase cellular Ca2+ transient alternans and repolarization alternans susceptibility in the intact rat heart
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Acidosis and ischemia increase cellular Ca2+ transient alternans and repolarization alternans susceptibility in the intact rat heart

机译:酸中毒和缺血增加了细胞Ca2 +瞬态交替,并且释放障碍在完整的大鼠心脏中易感性

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Cardiac cellular Ca2+ transient (CaT) alternans and electrocardiographic T-wave alternans (TWA) often develop in myocardial ischemia, but the mechanisms for this relationship have not been elucidated. Acidosis is a major component of ischemia, but there is no direct evidence linking acidosis-induced cellular CaT alternans to ischemia-induced CaT alternans and TWA in whole heart. We used laser-scanning confocal microscopy to measure intracellular Ca2+ (Cai2+) cycling in individual myocytes of fluo-4 AM-loaded rat hearts and simultaneously recorded pseudo-ECGs to investigate changes in CaTs and late-phase repolarization, respectively, during baseline and rapid pacing under control and either globally acidic or globally ischemic conditions. Acidosis (hypercapnia; pH 6.6) increased diastolic Cai2+ levels, prolonged CaT duration, and shifted to slower heart rates both the development of pacing-induced acidosis-induced CaT alternans (both concordant and discordant) and of repolarization alternans (RPA, a measure of TWA in rat ECGs). The magnitudes of these shifts were equivalent for both CaT alternans and RPA, suggesting a close association between them. Nearly identical results were found in low-flow global ischemia. Additionally, ischemic preconditioning reduced the increased propensity for CaT alternans and RPA development and was mimicked by preconditioning by acidosis alone. Our results demonstrate that global acidosis or ischemia modifies Cai2+ cycling in myocytes such that the diastolic Cai2+ rises and the cellular CaT duration is prolonged, causing spatially concordant as well as spatially discordant cellular CaT alternans to develop at slower heart rates than in controls. Since RPA also developed at slower heart rates, our results suggest that acidosis is a major contributor to CaT alternans, which underlies the proarrhythmic state induced by myocardial ischemia and therefore may play a role in its modulation and prevention. Copyright ? 2009 the American Physiological Society.
机译:心脏细胞CA2 +瞬态(猫)和心电图T波段(TWA)通常在心肌缺血中发展,但这种关系的机制尚未阐明。酸度是缺血的主要成分,但没有直接证据将酸中毒诱导的细胞猫交替链接到缺血诱导的猫替代人和全部心脏的TWA。我们使用激光扫描共聚焦显微镜测量氟-4 am-Loaded大鼠心脏单个肌细胞的细胞内Ca2 +(CAI2 +),同时记录伪心电图,分别在基线和快速期间调查猫和后期复极化的变化。在控制下起搏和全球酸性或全球缺血条件。酸中毒(Hypercapnia; pH6.6)增加舒张性Cai2 +水平,延长的猫持续时间,并转移到慢的心脏率均发育起搏诱导的酸中毒诱导的猫交替(兼容和不和谐)和倒钩交替(RPA,衡量标准在大鼠ECG中的TWA)。这些换档的大小相当于猫替代和RPA,表明它们之间的密切相关。在低流量全球缺血中发现了几乎相同的结果。此外,缺血预处理降低了猫障碍和RPA发育的增加倾向,并且通过单独的酸中毒预处理模仿。我们的结果表明,全球酸中毒或缺血在肌细胞中改变CaI2 +循环,使得舒张酸Cai2 +上升和细胞猫持续时间延长,导致空间有效的细胞猫交替,在较慢的心率下比对照组成。由于RPA在心率较慢的心率下发展,我们的结果表明,酸中毒是猫障碍的主要贡献者,这是由心肌缺血引起的促进状态下放,因此可能在其调制和预防中发挥作用。版权? 2009年美国生理社会。

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