首页> 外文期刊>Journal of Pharmacological and Toxicological Methods >Negative electro-mechanical windows are required for drug-induced Torsades de Pointes in the anesthetized guinea pig
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Negative electro-mechanical windows are required for drug-induced Torsades de Pointes in the anesthetized guinea pig

机译:在麻醉的豚鼠中,药物诱发的Torsades de Pointes需要负电动机械窗

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Introduction: Assessment of the propensity of novel drugs to cause proarrhythmia is essential in the drug development process. It is increasingly recognized, however, that QT prolongation alone is an imperfect surrogate marker for Torsades de Pointes (TdP) arrhythmia prediction. In the present study we investigated the behavior of a novel surrogate marker for TdP, the electro-mechanical (E-M) window, prior to triggering of TdP episodes with sympathetic stimulation after administration of a number of reference compounds. Methods: Experiments were carried out in closed chest pentobarbital anesthetized guinea pigs. Test compounds were administered intravenously together with a specific I Ks blocker (JNJ303; 0.2mgkg -1min -1 for 3min) and adrenaline (0.06mgkg -1min -1 for 2min) was applied to trigger TdP. ECG, blood- and left ventricular pressure signals were measured continuously throughout the experiments. The E-M window i.e. the duration of the mechanical systole (QLVP end interval) minus the duration of the electrical activity (QT interval) was assessed for individual beats. Results: Drugs with documented TdP liability (quinidine, haloperidol, domperidone, terfenadine, moxifloxacin, ciprofloxacin and dofetilide) produced TdP in the protocol after adrenaline infusion, whereas negative control compounds (verapamil, ranolazine, amiodarone and saline) did not cause TdP arrhythmia, even though increases in repolarization times were observed. TdP were typically preceded by large (greater than -50 ms) negative electro-mechanical windows and were accompanied by aftercontractions. Discussion: The present study in anesthetized guinea pigs indicates that negative E-M windows are a prerequisite for sympathetically-driven TdP induction after the administration of various agents with known proarrhythmic potential. These data are a first step in the validation of this novel protocol; however we believe that this proarrhythmia model in small animals might be a valuable additional tool in the prediction of TdP risk of new chemical entities at the early stages of drug discovery.
机译:简介:在药物开发过程中,评估新药引起心律失常的可能性至关重要。然而,越来越多的人认识到,仅QT延长是Torsades de Pointes(TdP)心律失常预测的不完美替代标志。在本研究中,我们研究了在给予许多参考化合物后,通过交感刺激触发TdP发作之前,TdP的新型替代标志物(机电(E-M)窗口)的行为。方法:在封闭的胸部戊巴比妥麻醉的豚鼠中进行实验。将测试化合物与特定的I Ks阻滞剂(JNJ303; 0.2mgkg -1min -1持续3min)静脉内给药,并应用肾上腺素(0.06mgkg -1min -1持续2min)触发TdP。在整个实验过程中,连续测量ECG,血液和左心室压力信号。针对单个心律评估E-M窗口,即机械收缩的持续时间(QLVP结束间隔)减去电活动的持续时间(QT间隔)。结果:记录有TdP责任的药物(奎尼丁,氟哌啶醇,多潘立酮,特非那定,莫西沙星,环丙沙星和多非利特)在输注肾上腺素后在方案中产生TdP,而阴性对照化合物(维拉帕米,雷诺嗪,胺碘酮和生理盐水)不会引起TdP心律失常即使观察到复极化时间增加。在TdP之前通常会出现较大的(大于-50 ms)负电动机械窗口,并伴有后收缩。讨论:目前在麻醉的豚鼠中的研究表明,阴性E-M窗口是在给予各种具有已知心律失常潜力的药物后,由交感神经驱动的TdP诱导的先决条件。这些数据是验证该新颖协议的第一步;但是,我们认为,这种小动物心律失常模型可能是在药物开发初期预测新化学实体的TdP风险的有价值的附加工具。

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