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比格犬药物诱导并发心动过速和QT变化的整合性毒代动力学-毒效动力学建模

Integrated TK-TD modeling for drug-induced concurrent tachycardia and QT changes in beagle dogs.

作者信息

Wu Fan, Heimbach Tycho, Hatsis Panos, Tang Hai-Ming, Dugyala Raviprakash, Yue Qin, Wang Tao, He Handan

机构信息

Department of PK Sciences, Novartis Institutes for BioMedical Research, 1 Health Plaza, East Hanover, NJ, USA.

Department of Preclinical Safety, Novartis Institutes for BioMedical Research, 1 Health Plaza, East Hanover, NJ, USA.

出版信息

J Pharmacokinet Pharmacodyn. 2017 Oct;44(5):449-462. doi: 10.1007/s10928-017-9532-2. Epub 2017 Jun 22.

Abstract

Drug-induced cardiotoxicity, including tachycardia and QT prolongation, remains a major safety concern that needs to be identified and its risk mitigated in early stages of drug development. In the present study, an integrated toxicokinetic-toxicodynamic (TK-TD) modeling approach within a nonlinear mixed-effect modeling framework is applied to investigate concurrent abnormal heart rate and QT changes in three beagle dogs, using a Novartis internal compound (NVS001) as the case example. By accounting for saturable drug absorption, circadian rhythms, drug-effect tolerance, and nonlinear rate-dependency of QT interval, the dynamic TK-TD model captures the experimentally observed drug effects on heart rate and QT interval across a wide dosing range of NVS001 in beagle dogs. Further analyses reveal that the NVS001-induced QT prolongation observed in the low-dose groups is potentially caused by direct drug inhibition on the hERG channel, while the apparent QT shortening in the high-dose groups may be due to strong rate-dependency of QT at high heart rates. This study also suggests that the TK-TD model can be used to identify direct drug effects on the non-rate-dependent QT component by dissociating QT changes from tachycardia and deriving a new QT correction method. The integrated TK-TD model presented here may serve as a novel quantitative framework for evaluating drug-induced concurrent changes in heart rate and QT to potentially facilitate preclinical and clinical safety studies.

摘要

药物诱导的心脏毒性,包括心动过速和QT间期延长,仍然是一个主要的安全问题,需要在药物研发的早期阶段识别并降低其风险。在本研究中,采用非线性混合效应建模框架内的综合毒代动力学-毒效动力学(TK-TD)建模方法,以诺华内部化合物(NVS001)为例,研究了三只比格犬同时出现的心率异常和QT变化。通过考虑药物的饱和吸收、昼夜节律、药物效应耐受性以及QT间期的非线性速率依赖性,动态TK-TD模型捕捉了在比格犬中NVS001广泛给药范围内实验观察到的药物对心率和QT间期的影响。进一步分析表明,低剂量组中观察到的NVS001诱导的QT间期延长可能是由于药物对hERG通道的直接抑制,而高剂量组中明显的QT间期缩短可能是由于高心率下QT的强烈速率依赖性。本研究还表明,TK-TD模型可通过将QT变化与心动过速分离并推导一种新的QT校正方法,用于识别药物对非速率依赖性QT成分的直接影响。本文提出的综合TK-TD模型可作为一种新的定量框架,用于评估药物诱导的心率和QT的同时变化,从而可能促进临床前和临床安全性研究。

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