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一种新型、强效、选择性的心脏晚期钠电流抑制剂可抑制实验性心律失常。

A novel, potent, and selective inhibitor of cardiac late sodium current suppresses experimental arrhythmias.

机构信息

Department of Biology, MD Gilead Sciences, Inc., 333 Lakeside Drive, Foster City, CA 94404, USA.

出版信息

J Pharmacol Exp Ther. 2013 Jan;344(1):23-32. doi: 10.1124/jpet.112.198887. Epub 2012 Sep 25.

Abstract

Inhibition of cardiac late sodium current (late I(Na)) is a strategy to suppress arrhythmias and sodium-dependent calcium overload associated with myocardial ischemia and heart failure. Current inhibitors of late I(Na) are unselective and can be proarrhythmic. This study introduces GS967 (6-[4-(trifluoromethoxy)phenyl]-3-(trifluoromethyl)-[1,2,4]triazolo[4,3-a]pyridine), a potent and selective inhibitor of late I(Na), and demonstrates its effectiveness to suppress ventricular arrhythmias. The effects of GS967 on rabbit ventricular myocyte ion channel currents and action potentials were determined. Anti-arrhythmic actions of GS967 were characterized in ex vivo and in vivo rabbit models of reduced repolarization reserve and ischemia. GS967 inhibited Anemonia sulcata toxin II (ATX-II)-induced late I(Na) in ventricular myocytes and isolated hearts with IC(50) values of 0.13 and 0.21 µM, respectively. Reduction of peak I(Na) by GS967 was minimal at a holding potential of -120 mV but increased at -80 mV. GS967 did not prolong action potential duration or the QRS interval. GS967 prevented and reversed proarrhythmic effects (afterdepolarizations and torsades de pointes) of the late I(Na) enhancer ATX-II and the I(Kr) inhibitor E-4031 in isolated ventricular myocytes and hearts. GS967 significantly attenuated the proarrhythmic effects of methoxamine+clofilium and suppressed ischemia-induced arrhythmias. GS967 was more potent and effective to reduce late I(Na) and arrhythmias than either flecainide or ranolazine. Results of all studies and assays of binding and activity of GS967 at numerous receptors, transporters, and enzymes indicated that GS967 selectively inhibited late I(Na). In summary, GS967 selectively suppressed late I(Na) and prevented and/or reduced the incidence of experimentally induced arrhythmias in rabbit myocytes and hearts.

摘要

抑制心肌晚期钠电流(晚期 INa)是抑制与心肌缺血和心力衰竭相关的心律失常和钠依赖性钙超载的一种策略。目前的晚期 INa 抑制剂没有选择性,可能导致心律失常。本研究介绍了 GS967(6-[4-(三氟甲氧基)苯基]-3-(三氟甲基)-[1,2,4]三唑并[4,3-a]吡啶),一种有效的晚期 INa 选择性抑制剂,并证明了其抑制室性心律失常的有效性。研究了 GS967 对兔心室肌离子通道电流和动作电位的影响。在兔模型中,GS967 在减少复极化储备和缺血的情况下表现出抗心律失常作用。GS967 抑制 Anemonia sulcata 毒素 II(ATX-II)诱导的心室肌细胞和分离心脏中的晚期 INa,IC50 值分别为 0.13 和 0.21µM。GS967 在 -120 mV 保持电位下对峰值 INa 的抑制作用最小,但在 -80 mV 时增加。GS967 不会延长动作电位持续时间或 QRS 间隔。GS967 可预防和逆转晚期 INa 增强剂 ATX-II 和 I(Kr)抑制剂 E-4031 在分离的心室肌细胞和心脏中的致心律失常作用(后除极和尖端扭转型室性心动过速)。GS967 显著减轻甲氧胺+氯菲安和缺血诱导的心律失常的致心律失常作用。GS967 比氟卡尼或雷诺嗪更有效地降低晚期 INa 和心律失常。GS967 与多种受体、转运体和酶结合和活性的所有研究结果和测定结果表明,GS967 选择性抑制晚期 INa。总之,GS967 选择性抑制晚期 INa,并预防和/或减少兔心肌细胞和心脏中实验性心律失常的发生。

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