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KMID : 0811720230270040399
Korean Journal of Physiology & Pharmacology
2023 Volume.27 No. 4 p.399 ~ p.406
Encainide, a class Ic anti-arrhythmic agent, blocks voltage-dependent potassium channels in coronary artery smooth muscle cells
Hongliang Li

Yue Zhou
Yongqi Yang
Yiwen Zha
Bingqian Ye
Mun Seo-Yeong
Wenwen Zhuang
Jingyan Liang
Park Won-Sun
Abstract
Voltage-dependent K+ (Kv) channels are widely expressed on vascular smooth muscle cells and regulate vascular tone. Here, we explored the inhibitory effect of encainide, a class Ic anti-arrhythmic agent, on Kv channels of vascular smooth muscle from rabbit coronary arteries. Encainide inhibited Kv channels in a concentration-dependent manner with an IC50 value of 8.91 ¡¾ 1.75 ¥ìM and Hill coefficient of 0.72 ¡¾ 0.06. The application of encainide shifted the activation curve toward a more positive potential without modifying the inactivation curve, suggesting that encainide inhibited Kv channels by altering the gating property of channel activation. The inhibition by encainide was not significantly affected by train pulses (1 and 2 Hz), indicating that the inhibition is not use (state)-dependent. The inhibitory effect of encainide was reduced by pretreatment with the Kv1.5 subtype inhibitor. However, pretreatment with the Kv2.1 subtype inhibitor did not alter the inhibitory effects of encainide on Kv currents. Based on these results, encainide inhibits vascular Kv channels in a concentration-dependent and use (state)-independent manner by altering the voltage sensor of the channels. Furthermore, Kv1.5 is the main Kv subtype involved in the effect of encainide.
KEYWORD
Anti-arrhythmia agents, Coronary vessels, Electrophysiology, Kv1.5 potassium channel, Potassium channels, voltage-gated
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