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K201是一种多通道阻滞剂,可抑制氯非铵诱发的尖端扭转型室速,并减弱复极化的增加。

K201, a multi-channel blocker, inhibits clofilium-induced torsades de pointes and attenuates an increase in repolarization.

作者信息

Hasumi Hisashi, Matsuda Ryuko, Shimamoto Ken, Hata Yoshihito, Kaneko Noboru

机构信息

Department of Cardiology and Pneumology, Dokkyo Medical University School of Medicine 880 Kitakobayashi, Mibu, Tochigi, Japan.

出版信息

Eur J Pharmacol. 2007 Jan 19;555(1):54-60. doi: 10.1016/j.ejphar.2006.10.005. Epub 2006 Oct 17.

Abstract

K201 (JTV519) is a 1,4-benzothiazepine derivative that exhibits a strong cardioprotective action and acts as a multiple-channel blocker, including as a K+ channel blocker. An experimental model of prolongation of the QT interval and torsades de pointes can be induced in rabbits by treatment with clofilium in the presence of the alpha1-adrenoreceptor agonist methoxamine. In this study we examined the effects of K201 with and without methoxamine on the QT and QTc intervals, and determined whether K201 inhibits clofilium-induced torsades de pointes in the presence of methoxamine (15 microg/kg/min) in rabbits (n=74). Administration of K201 (0, 40, 100, 200 and 400 microg/kg/min) with and without methoxamine prolonged the QT interval in a dose-dependent manner, and torsades de pointes did not occur in any animals. However, clofilium (50 microg/kg/min) with methoxamine induced torsades de pointes in all animals (6/6). Torsades de pointes occurred at rates of 100%, 67%, 40% and 0% at K201 concentrations of 0, 50, 200 and 400 microg/kg/min, respectively, in the clofilium-infused torsades de pointes model. Therefore, 400 microg/kg/min of K201 completely inhibited clofilium-induced torsades de pointes and attenuated the increase of repolarization caused by clofilium; the inhibitory effects of K201 may be related to its pharmacological properties as an alpha1-adrenoceptor blocker. Overall, our results show that K201 causes prolongation of the QT and QTc intervals, but does not induce torsades de pointes, with and without alpha1-adrenoceptor stimulation. Furthermore, K201 inhibits clofilium-induced torsades de pointes, despite QT prolongation, suggesting that QT prolongation alone is not a proarrhythmic signal.

摘要

K201(JTV519)是一种1,4 - 苯并硫氮杂䓬衍生物,具有强大的心脏保护作用,是一种多通道阻滞剂,包括作为钾通道阻滞剂。在α1 - 肾上腺素能受体激动剂甲氧明存在的情况下,用氯非铵处理可在兔中诱导出QT间期延长和尖端扭转型室速的实验模型。在本研究中,我们研究了有无甲氧明时K201对QT和QTc间期的影响,并确定在兔(n = 74)中,在甲氧明(15微克/千克/分钟)存在的情况下,K201是否能抑制氯非铵诱导的尖端扭转型室速。给予有或没有甲氧明的K201(0、40、100、200和400微克/千克/分钟)均以剂量依赖性方式延长QT间期,且任何动物均未发生尖端扭转型室速。然而,氯非铵(50微克/千克/分钟)与甲氧明一起在所有动物(6/6)中诱导出尖端扭转型室速。在氯非铵诱发的尖端扭转型室速模型中,当K201浓度分别为0、50、200和400微克/千克/分钟时,尖端扭转型室速的发生率分别为100%、67%、40%和0%。因此,400微克/千克/分钟的K201完全抑制了氯非铵诱导的尖端扭转型室速,并减轻了氯非铵引起的复极化增加;K201的抑制作用可能与其作为α1 - 肾上腺素能受体阻滞剂的药理特性有关。总体而言,我们的结果表明,无论有无α1 - 肾上腺素能受体刺激,K201都会导致QT和QTc间期延长,但不会诱发尖端扭转型室速。此外,尽管QT延长,K201仍能抑制氯非铵诱导的尖端扭转型室速,这表明单独的QT延长并非促心律失常信号。

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