赫尔格
QT间期
安全药理学
药理学
延长
医学
尖端扭转
药物开发
药品
长QT综合征
药物发现
豚鼠
麻醉
内科学
钾通道
生物信息学
生物
作者
Xing-Can Yao,Don L. Anderson,Seamus Ross,Daniel G. Lang,Bhasha Desai,David C. Cooper,Pat Wheelan,Maggie S. McIntyre,Maria Bergquist,Kathleen I. MacKenzie,J. David Becherer,Mir A. Hashim
摘要
Background and purpose: Drug‐induced prolongation of the QT interval can lead to torsade de pointes, a life‐threatening ventricular arrhythmia. Finding appropriate assays from among the plethora of options available to predict reliably this serious adverse effect in humans remains a challenging issue for the discovery and development of drugs. The purpose of the present study was to develop and verify a reliable and relatively simple approach for assessing, during preclinical development, the propensity of drugs to prolong the QT interval in humans. Experimental approach: Sixteen marketed drugs from various pharmacological classes with a known incidence—or lack thereof—of QT prolongation in humans were examined in hERG (human ether a‐go‐go‐related gene) patch‐clamp assay and an anaesthetized guinea‐pig assay for QT prolongation using specific protocols. Drug concentrations in perfusates from hERG assays and plasma samples from guinea‐pigs were determined using liquid chromatography‐mass spectrometry. Key results: Various pharmacological agents that inhibit hERG currents prolong the QT interval in anaesthetized guinea‐pigs in a manner similar to that seen in humans and at comparable drug exposures. Several compounds not associated with QT prolongation in humans failed to prolong the QT interval in this model. Conclusions and implications: Analysis of hERG inhibitory potency in conjunction with drug exposures and QT interval measurements in anaesthetized guinea‐pigs can reliably predict, during preclinical drug development, the risk of human QT prolongation. A strategy is proposed for mitigating the risk of QT prolongation of new chemical entities during early lead optimization. British Journal of Pharmacology (2008) 154 , 1446–1456; doi: 10.1038/bjp.2008.267 ; published online 30 June 2008
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