Second-generation antipsychotic quetiapine blocks voltage-dependent potassium channels in coronary arterial smooth muscle cells

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초록

Voltage-dependent K+ (Kv) channels play an important role in restoring the membrane potential to its resting state, thereby maintaining vascular tone. In this study, native smooth muscle cells from rabbit coronary arteries were used to investigate the inhibitory effect of quetiapine, an atypical antipsychotic agent, on Kv channels. Quetiapine showed a concentration-dependent inhibition of Kv channels, with an IC50 of 47.98 +/- 9.46 mu M. Although quetiapine (50 mu M) did not alter the steady-state activation curve, it caused a negative shift in the steady-state inactivation curve. The application of 1 and 2 Hz train steps in the presence of quetiapine significantly increased the inhibition of Kv current. Moreover, the recovery time constants from inactivation were prolonged in the presence of quetiapine, suggesting that its inhibitory action on Kv channels is use (state)-dependent. The inhibitory effects of quetiapine were not significantly affected by pretreatment with Kv1.5, Kv2.1, and Kv7 subtype inhibitors. Based on these findings, we conclude that quetiapine inhibits Kv channels in both a concentration- and use (state)-dependent manner. Given the physiological significance of Kv channels, caution is advised in the use of quetiapine as an antipsychotic due to its potential side effects on cardiovascular Kv channels.

키워드

coronary arterial smooth muscle cellelectrophysiologyquetiapinevoltage-dependent K+ channelHERG K+ CHANNELSDRUG-INTERACTIONSRISK
제목
Second-generation antipsychotic quetiapine blocks voltage-dependent potassium channels in coronary arterial smooth muscle cells
저자
Zhuang, WenwenMun, Seo-YeongPark, MinjuJeong, JunsuKim, Hye RyungPark, HongzooHan, Eun-TaekHan, Jin-HeeChun, WanjooLi, HongliangPark, Won Sun
DOI
10.1002/jat.4648
발행일
2024-09
유형
Article
저널명
Journal of Applied Toxicology
44
9
페이지
1446 ~ 1453