Denham Nathan C, Pearman Charles M, Caldwell Jessica L, Madders George W P, Eisner David A, Trafford Andrew W, Dibb Katharine M
Unit of Cardiac Physiology, Division of Cardiovascular Sciences, Manchester Academic Health Science Centre, University of Manchester, Manchester, United Kingdom.
Front Physiol. 2018 Oct 4;9:1380. doi: 10.3389/fphys.2018.01380. eCollection 2018.
Atrial fibrillation (AF) is commonly associated with heart failure. A bidirectional relationship exists between the two-AF exacerbates heart failure causing a significant increase in heart failure symptoms, admissions to hospital and cardiovascular death, while pathological remodeling of the atria as a result of heart failure increases the risk of AF. A comprehensive understanding of the pathophysiology of AF is essential if we are to break this vicious circle. In this review, the latest evidence will be presented showing a fundamental role for calcium in both the induction and maintenance of AF. After outlining atrial electrophysiology and calcium handling, the role of calcium-dependent afterdepolarizations and atrial repolarization alternans in triggering AF will be considered. The atrial response to rapid stimulation will be discussed, including the short-term protection from calcium overload in the form of calcium signaling silencing and the eventual progression to diastolic calcium leak causing afterdepolarizations and the development of an electrical substrate that perpetuates AF. The role of calcium in the bidirectional relationship between heart failure and AF will then be covered. The effects of heart failure on atrial calcium handling that promote AF will be reviewed, including effects on both atrial myocytes and the pulmonary veins, before the aspects of AF which exacerbate heart failure are discussed. Finally, the limitations of human and animal studies will be explored allowing contextualization of what are sometimes discordant results.
心房颤动(AF)通常与心力衰竭相关。两者之间存在双向关系——AF会加重心力衰竭,导致心力衰竭症状、住院率和心血管死亡率显著增加,而心力衰竭导致的心房病理性重塑会增加AF的风险。如果我们要打破这个恶性循环,全面了解AF的病理生理学至关重要。在这篇综述中,将展示最新证据,表明钙在AF的诱发和维持中起着基本作用。在概述心房电生理学和钙处理后,将探讨钙依赖性后去极化和心房复极交替在触发AF中的作用。将讨论心房对快速刺激的反应,包括以钙信号沉默形式对钙超载的短期保护,以及最终发展为舒张期钙泄漏,导致后去极化和形成使AF持续存在的电基质。随后将阐述钙在心力衰竭和AF双向关系中的作用。在讨论AF加重心力衰竭的方面之前,将综述心力衰竭对促进AF的心房钙处理的影响,包括对心房肌细胞和肺静脉的影响。最后,将探讨人类和动物研究的局限性,以便对有时不一致的结果进行背景化分析。