Kang Minji, Heo Ryeon, Park Seojin, Mun Seo-Yeong, Park Minju, Han Eun-Taek, Han Jin-Hee, Chun Wanjoo, Ha Kwon-Soo, Park Hongzoo, Jung Won-Kyo, Choi Il-Whan, Park Won Sun
Institute of Medical Sciences, Department of Physiology, Kangwon National University School of Medicine, Chuncheon 24341, Korea.
Department of Medical Environmental Biology and Tropical Medicine, Kangwon National University School of Medicine, Chuncheon 24341, Korea.
Korean J Physiol Pharmacol. 2022 Jul 1;26(4):277-285. doi: 10.4196/kjpp.2022.26.4.277.
To investigate the adverse effects of clozapine on cardiovascular ion channels, we examined the inhibitory effect of clozapine on voltage-dependent K (Kv) channels in rabbit coronary arterial smooth muscle cells. Clozapine-induced inhibition of Kv channels occurred in a concentration-dependent manner with an half-inhibitory concentration value of 7.84 ± 4.86 µM and a Hill coefficient of 0.47 ± 0.06. Clozapine did not shift the steady-state activation or inactivation curves, suggesting that it inhibited Kv channels regardless of gating properties. Application of train pulses (1 and 2 Hz) progressively augmented the clozapine-induced inhibition of Kv channels in the presence of the drug. Furthermore, the recovery time constant from inactivation was increased in the presence of clozapine, suggesting that clozapine-induced inhibition of Kv channels is use (state)-dependent. Pretreatment of a Kv1.5 subtype inhibitor decreased the Kv current amplitudes, but additional application of clozapine did not further inhibit the Kv current. Pretreatment with Kv2.1 or Kv7 subtype inhibitors partially blocked the inhibitory effect of clozapine. Based on these results, we conclude that clozapine inhibits arterial Kv channels in a concentrationand use (state)-dependent manner. Kv1.5 is the major subtype involved in clozapine-induced inhibition of Kv channels, and Kv2.1 and Kv7 subtypes are partially involved.
为研究氯氮平对心血管离子通道的不良影响,我们检测了氯氮平对兔冠状动脉平滑肌细胞电压依赖性钾(Kv)通道的抑制作用。氯氮平对Kv通道的抑制呈浓度依赖性,半数抑制浓度值为7.84±4.86µM,希尔系数为0.47±0.06。氯氮平未使稳态激活或失活曲线发生位移,表明其对Kv通道的抑制与门控特性无关。在药物存在的情况下,施加串刺激(1Hz和 Hz)可逐渐增强氯氮平对Kv通道的抑制作用。此外,在氯氮平存在的情况下,失活后的恢复时间常数增加,表明氯氮平对Kv通道的抑制具有使用(状态)依赖性。Kv1.5亚型抑制剂预处理可降低Kv电流幅度,但额外施加氯氮平并未进一步抑制Kv电流。Kv2.1或Kv7亚型抑制剂预处理可部分阻断氯氮平的抑制作用。基于这些结果,我们得出结论,氯氮平以浓度和使用(状态)依赖性方式抑制动脉Kv通道。Kv1.5是氯氮平诱导Kv通道抑制作用的主要亚型,Kv2.1和Kv7亚型部分参与其中。