Kohajda Zsófia, Loewe Axel, Tóth Noémi, Varró András, Nagy Norbert
MTA-SZTE Research Group of Cardiovascular Pharmacology, Hungarian Academy of Sciences, Szeged, Hungary.
Department of Pharmacology and Pharmacotherapy, Faculty of Medicine, University of Szeged, Szeged, Hungary.
Front Pharmacol. 2020 Apr 28;11:516. doi: 10.3389/fphar.2020.00516. eCollection 2020.
The electrophysiological mechanism of the sinus node automaticity was previously considered exclusively regulated by the so-called "funny current". However, parallel investigations increasingly emphasized the importance of the Ca-homeostasis and Na/Ca exchanger (NCX). Recently, increasing experimental evidence, as well as insight through mechanistic modeling demonstrates the crucial role of the exchanger in sinus node pacemaking. NCX had a key role in the exciting story of discovery of sinus node pacemaking mechanisms, which recently settled with a consensus on the coupled-clock mechanism after decades of debate. This review focuses on the role of the Na/Ca exchanger from the early results and concepts to recent advances and attempts to give a balanced summary of the characteristics of the local, spontaneous, and rhythmic Ca releases, the molecular control of the NCX and its role in the fight-or-flight response. Transgenic animal models and pharmacological manipulation of intracellular Ca concentration and/or NCX demonstrate the pivotal function of the exchanger in sinus node automaticity. We also highlight where specific hypotheses regarding NCX function have been derived from computational modeling and require experimental validation. Nonselectivity of NCX inhibitors and the complex interplay of processes involved in Ca handling render the design and interpretation of these experiments challenging.
窦房结自律性的电生理机制以前被认为完全由所谓的“起搏电流”调节。然而,并行研究越来越强调钙稳态和钠/钙交换器(NCX)的重要性。最近,越来越多的实验证据以及通过机制建模获得的见解表明,该交换器在窦房结起搏中起关键作用。NCX在窦房结起搏机制的发现历程中扮演了关键角色,经过数十年的争论,最近关于耦合时钟机制达成了共识。本综述聚焦于钠/钙交换器的作用,从早期结果和概念到近期进展,并试图对局部、自发和有节律的钙释放特性、NCX的分子调控及其在应激反应中的作用进行全面总结。转基因动物模型以及对细胞内钙浓度和/或NCX的药理学操作证明了该交换器在窦房结自律性中的关键作用。我们还强调了关于NCX功能的特定假设源自计算建模且需要实验验证的方面。NCX抑制剂的非选择性以及钙处理过程中涉及的复杂相互作用使得这些实验的设计和解释具有挑战性。