Literature DB >> 11194593

Rate dependence of the effect of antiarrhythmic drugs delaying cardiac repolarization: an overview.

P Dorian1, D Newman.   

Abstract

Prolongation of the cardiac action potential and refractoriness (class III effect) is a potentially beneficial electrophysiological mechanism of action. However, this effect may be diminished or eliminated at rapid heart rates, so-called 'reverse rate dependence' of prolongation of repolarization. Action potential duration normally shortens as heart rate increases, due to increases in outward repolarizing currents, and/or decreases in inward depolarizing currents. The assessment of the effect of drugs on action potential duration is complicated by inter-species differences in ionic currents mediating repolarization, heterogeneity within the heart in repolarizing currents, and differential effect of drugs in different species, during differing experimental conditions, and at different rates of stimulation. In general, most drugs which predominantly block the IKr repolarizing current exhibit reverse rate-dependent effects on cardiac repolarization. Drugs or combinations of drugs which produce multiple ionic channel blocks and possibly those which block the IKs current, may be less prone to this potentially undesirable effect.

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Year:  2000        PMID: 11194593     DOI: 10.1053/eupc.2000.0114

Source DB:  PubMed          Journal:  Europace        ISSN: 1099-5129            Impact factor:   5.214


  15 in total

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2.  Late sodium current contributes to the reverse rate-dependent effect of IKr inhibition on ventricular repolarization.

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3.  Blockade of IKs by HMR 1556 increases the reverse rate-dependence of refractoriness prolongation by dofetilide in isolated rabbit ventricles.

Authors:  Petsy Pui-Sze So; Xu-Dong Hu; Peter H Backx; José Luis Puglisi; Paul Dorian
Journal:  Br J Pharmacol       Date:  2006-06       Impact factor: 8.739

4.  Multiple mechanisms of hERG liability: K+ current inhibition, disruption of protein trafficking, and apoptosis induced by amoxapine.

Authors:  Sabrina Obers; Ingo Staudacher; Eckhard Ficker; Adrienne Dennis; Ronald Koschny; Hande Erdal; Ramona Bloehs; Jana Kisselbach; Christoph A Karle; Patrick A Schweizer; Hugo A Katus; Dierk Thomas
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  2010-03-13       Impact factor: 3.000

5.  Simulation and mechanistic investigation of the arrhythmogenic role of the late sodium current in human heart failure.

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6.  Effects of ranolazine on torsades de pointes tachycardias in a healthy isolated rabbit heart model.

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Review 7.  Species-Dependent Mechanisms of Cardiac Arrhythmia: A Cellular Focus.

Authors:  Andrew G Edwards; William E Louch
Journal:  Clin Med Insights Cardiol       Date:  2017-02-02

8.  Arrhythmogenic drugs can amplify spatial heterogeneities in the electrical restitution in perfused guinea-pig heart: An evidence from assessments of monophasic action potential durations and JT intervals.

Authors:  Oleg E Osadchii
Journal:  PLoS One       Date:  2018-01-19       Impact factor: 3.240

9.  Andrographolide inhibits arrhythmias and is cardioprotective in rabbits.

Authors:  Mengliu Zeng; Wanzhen Jiang; Youjia Tian; Jie Hao; Zhenzhen Cao; Zhipei Liu; Chen Fu; Peihua Zhang; Jihua Ma
Journal:  Oncotarget       Date:  2017-05-22

10.  Inhibitory Effect of Vascular Endothelial Growth Factor on the Slowly Activating Delayed Rectifier Potassium Current in Guinea Pig Ventricular Myocytes.

Authors:  Zhenhao Lin; Wenlu Xing; Chuanyu Gao; Xianpei Wang; Datun Qi; Guoyou Dai; Wen Zhao; Ganxin Yan
Journal:  J Am Heart Assoc       Date:  2018-01-26       Impact factor: 5.501

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