Combined pharmacological block of IKr and IKs increases short‐term QT interval variability and provokes torsades de pointes
- 1 August 2007
- journal article
- Published by Wiley in British Journal of Pharmacology
- Vol. 151 (7) , 941-951
- https://doi.org/10.1038/sj.bjp.0707297
Abstract
Assessing the proarrhythmic potential of compounds during drug development is essential. However, reliable prediction of drug-induced torsades de pointes arrhythmia (TdP) remains elusive. Along with QT interval prolongation, assessment of the short-term variability of the QT interval (STV(QT)) may be a good predictor of TdP. We investigated the relative importance of I(Ks) and I(Kr) block in development of TdP together with correlations between QTc interval, QT interval variability and incidence of TdP. ECGs were recorded from conscious dogs and from anaesthetized rabbits given the I(Kr) blocker dofetilide (DOF), the I(Ks) blocker HMR-1556 (HMR) and their combination, intravenously. PQ, RR and QT intervals were measured and QTc and short-term variability of RR and QT intervals calculated. DOF increased QTc interval by 20% in dogs and 8% in rabbits. HMR increased QTc in dogs by 12 and 1.9% in rabbits. Combination of DOF+HMR prolonged QTc by 33% in dogs, by 16% in rabbits. DOF or HMR given alone in dogs or HMR given alone in rabbits induced no TdP. Incidence of TdP increased after DOF+HMR combinations in dogs (63%) and following HMR+DOF (82%) and DOF+HMR combinations (71%) in rabbits. STV(QT) markedly increased only after administration of DOF+HMR combinations in both dogs and rabbits. STV(QT) was markedly increased by combined pharmacological block of I(Kr) and I(Ks) and may be a better predictor of subsequent TdP development than the measurement of QTc interval prolongation.Keywords
This publication has 37 references indexed in Scilit:
- Blockade of I Ks by HMR 1556 increases the reverse rate-dependence of refractoriness prolongation by dofetilide in isolated rabbit ventriclesBritish Journal of Pharmacology, 2006
- P6-18: Estimation of the proarrhythmic risk by short term variability of QT-interval and/or action potential duration in dogHeart Rhythm, 2006
- Gender differences in the slow delayed (IKs) but not in inward (IK1) rectifier K+currents of canine Purkinje fibre cardiac action potential: key roles forIKs,β‐adrenoceptor stimulation, pacing rate and genderBritish Journal of Pharmacology, 2006
- Protecting the Heart Against Arrhythmias: Potassium Current Physiology and Repolarization ReserveCirculation, 2005
- Assessing predictors of drug-induced torsade de pointesTrends in Pharmacological Sciences, 2003
- Proarrhythmic potential of halofantrine, terfenadine and clofilium in a modified in vivo model of torsade de pointesBritish Journal of Pharmacology, 2002
- Multicenter Automatic Defibrillator Implantation Trial II (MADIT II): Design and Clinical ProtocolAnnals of Noninvasive Electrocardiology, 1999
- Dofetilide, A Novel Class III Antiarrhythmic AgentJournal of Cardiovascular Pharmacology, 1992
- QTU-Prolongation and Torsades de Pointes Induced by Putative Class III Antiarrhythmic Agents in the RabbitJournal of Cardiovascular Pharmacology, 1990
- An improved method to correct the QT interval of the electrocardiogram for changes in heart rateJournal of Pharmacological Methods, 1989