Acacetin, a Natural Flavone, Selectively Inhibits Human Atrial Repolarization Potassium Currents and Prevents Atrial Fibrillation in Dogs

阿卡汀 医学 心房颤动 内科学 QT间期 钾通道 赫尔格 药理学 心脏病学 索他洛尔 有效耐火期 化学 类黄酮 生物化学 抗氧化剂 芹菜素
作者
Gui-Rong Li,Hongbing Wang,Guo‐Wei Qin,Mingwei Jin,Qiang Tang,Hai‐Ying Sun,Xiaona Du,Xingming Deng,Xiaohua Zhang,Jingbo Chen,Lei Chen,Xiaohui Xu,Lin Cheng,SW Chiu,Hung‐Fat Tse,Paul M. Vanhoutte,Chu‐Pak Lau
出处
期刊:Circulation [Lippincott Williams & Wilkins]
卷期号:117 (19): 2449-2457 被引量:113
标识
DOI:10.1161/circulationaha.108.769554
摘要

Background— The development of atrium-selective antiarrhythmic agents is a current strategy for inhibiting atrial fibrillation (AF). The present study investigated whether the natural flavone acacetin from the traditional Chinese medicine Xuelianhua would be an atrium-selective anti-AF agent. Methods and Results— The effects of acacetin on human atrial ultrarapid delayed rectifier K + current ( I Kur ) and other cardiac ionic currents were studied with a whole-cell patch technique. Acacetin suppressed I Kur and the transient outward K + current (IC 50 3.2 and 9.2 μmol/L, respectively) and prolonged action potential duration in human atrial myocytes. The compound blocked the acetylcholine-activated K + current; however, it had no effect on the Na + current, L-type Ca 2+ current, or inward-rectifier K + current in guinea pig cardiac myocytes. Although acacetin caused a weak reduction in the hERG and hKCNQ1/hKCNE1 channels stably expressed in HEK 293 cells, it did not prolong the corrected QT interval in rabbit hearts. In anesthetized dogs, acacetin (5 mg/kg) prolonged the atrial effective refractory period in both the right and left atria 1 to 4 hours after intraduodenal administration without prolongation of the corrected QT interval, whereas sotalol at 5 mg/kg prolonged both the atrial effective refractory period and the corrected QT interval. Acacetin prevented AF induction at doses of 2.5 mg/kg (50%), 5 mg/kg (85.7%), and 10 mg/kg (85.7%). Sotalol 5 mg/kg also prevented AF induction (60%). Conclusions— The present study demonstrates that the natural compound acacetin is an atrium-selective agent that prolongs the atrial effective refractory period without prolonging the corrected QT interval and effectively prevents AF in anesthetized dogs after intraduodenal administration. These results indicate that oral acacetin is a promising atrium-selective agent for the treatment of AF.
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