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Calcium-mediated cellular triggered activity in atrial fibrillation

机译:钙介导的心房颤动中的细胞触发活性

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Although atrial fibrillation (AF) is the most commonly encountered cardiac arrhythmia, the basic mechanisms underlying this disorder remain incompletely understood. During the past decade or so, it has become clear that alterations in intracellular Ca2+ handling may play a role in the pathogenesis of AF. Studies in small and large animal models, as well as atrial samples from patients with different forms of AF, have implicated ryanodine receptor type 2 (RyR2) dysfunction and enhanced spontaneous Ca2+ release events from the sarcoplasmic reticulum(SR) as a potential cause of proarrhythmic cellular ectopic (triggered) activity in AF. The molecular mechanisms leading to RyR2 dysfunction and SR Ca2+ leak depend on the clinical stage of AF or specific animal model studied. This review focuses on the mechanisms and role of calcium-mediated cellular triggered activity in AF, and addresses some of the current controversies in the field.
机译:虽然心房颤动(AF)是最常见的心律失常,但这种疾病的基本机制仍然不完全理解。 在过去十年左右,很明显,细胞内Ca2 +处理中的改变可能在AF的发病机制中发挥作用。 小型和大型动物模型的研究,以及来自不同形式的AF的患者的心房样本,将来自Sarcoplasmic网状物(SR)的含卤代胺受体2(Ryr2)功能障碍和增强的自发性Ca2 +释放事件作为潜在的预审性原因 AF中的细胞异位(触发)活性。 导致Ryr2功能障碍和SR CA2 +泄漏的分子机制取决于研究的AF或特定动物模型的临床阶段。 本综述重点介绍了钙介导的细胞触发活动在AF中的机制和作用,并解决了领域的一些目前的争议。

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