Atrial fibrillation (AF) is the most frequent arrhythmia and is associated with increased morbidity and mortality. Current drugs for AF treatment have limited efficacy and a substantial risk of proarrhythmic side effects, making novel drug development critical. Emerging evidence suggests that abnormal intracellular calcium (Ca(2+)) signalling is a key contributor to ectopic (triggered) electrical activity in human AF. Accordingly, atrial Ca(2+)-handling abnormalities underlying ectopic activity may constitute novel mechanism-based therapeutic approaches to treat AF. This article reviews the recent evidence for a role of cellular ectopic activity in human AF pathophysiology, discusses the molecular mechanisms underlying triggered activity in human atrial myocytes, and considers their relevance to the design of novel therapeutic options.

译文

:房颤(AF)是最常见的心律不齐,并与发病率和死亡率增加相关。当前用于AF治疗的药物具有有限的功效和存在心律不齐副作用的巨大风险,这使得新药开发变得至关重要。新兴证据表明,异常的细胞内钙(Ca(2))信号传导是人类房颤异位(触发)电活动的关键因素。因此,处理异位活动的心房Ca(2)处理异常可能构成治疗AF的新的基于机制的治疗方法。本文回顾了细胞异位活性在人类房颤病理生理中的作用的最新证据,讨论了在人类心房肌细胞中触发活动的潜在分子机制,并考虑了它们与新型治疗方案设计的相关性。

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