The antipsychotic drug haloperidol can induce a marked QT prolongat'/> The inhibitory effect of the antipsychotic drug haloperidol on HERG potassium channels expressed in Xenopus oocytes
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The inhibitory effect of the antipsychotic drug haloperidol on HERG potassium channels expressed in Xenopus oocytes

机译:抗精神病药物氟哌啶醇对非洲爪蟾卵母细胞中HERG钾通道的抑制作用

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摘要

class="enumerated" style="list-style-type:decimal">The antipsychotic drug haloperidol can induce a marked QT prolongation and polymorphic ventricular arrhythmias. In this study, we expressed several cloned cardiac K+ channels, including the human ether-a-go-go related gene (HERG) channels, in Xenopus oocytes and tested them for their haloperidol sensitivity.Haloperidol had only little effects on the delayed rectifier channels Kv1.1, Kv1.2, Kv1.5 and IsK, the A-type channel Kv1.4 and the inward rectifier channel Kir2.1 (inhibition <6% at 3 μM haloperidol).In contrast, haloperidol blocked HERG channels potently with an IC50 value of approximately 1 μM. Reduced haloperidol, the primary metabolite of haloperidol, produced a block with an IC50 value of 2.6 μM.Haloperidol block was use- and voltage-dependent, suggesting that it binds preferentially to either open or inactivated HERG channels. As haloperidol increased the degree and rate of HERG inactivation, binding to inactivated HERG channels is suggested.The channel mutant HERG S631A has been shown to exhibit greatly reduced C-type inactivation which occurs only at potentials greater than 0 mV. Haloperidol block of HERG S631A at 0 mV was four fold weaker than for HERG wild-type channels. Haloperidol affinity for HERG S631A was increased four fold at +40 mV compared to 0 mV.In summary, the data suggest that HERG channel blockade is involved in the arrhythmogenic side effects of haloperidol. The mechanism of haloperidol block involves binding to inactivated HERG channels.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 抗精神病药氟哌啶醇可引起明显的QT延长和多形性室性心律失常。在这项研究中,我们在非洲爪蟾卵母细胞中表达了几个克隆的心脏K + 通道,包括人类以太相关基因(HERG)通道,并测试了它们对氟哌啶醇的敏感性。 卤虫酚对延迟整流器通道Kv1.1,Kv1.2,Kv1.5和IsK,A型通道Kv1.4和向内整流器通道Kir2.1的影响很小(抑制<6% 相反,氟哌啶醇有效阻断HERG通道,IC50值约为1µM。减少的氟哌啶醇是氟哌啶醇的主要代谢产物,其产生的IC50值为2.6μM。 卤哌啶醇嵌段与使用和电压有关,表明它优先与开放或失活的HERG通道结合。随着氟哌啶醇增加HERG失活的程度和速率,建议与失活的HERG通道结合。 已证明通道突变体HERG S631A的C型失活大大减少,仅在大于0的电势下发生毫伏HERG S631A在0 mV的氟哌啶醇阻滞比HERG野生型通道弱四倍。氟哌啶醇对HERG S631A的亲和力在+40 mV时比0 mV增加了4倍。氟哌啶醇阻断的机制涉及与灭活的HERG通道结合。

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