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Role of abnormal repolarization in the mechanism of cardiac arrhythmia
1Department of Health Science and Technology, University of Aalborg, Aalborg, Denmark.
Abstract:
In cardiac patients, life-threatening tachyarrhythmia is often precipitated by abnormal changes in ventricular repolarization and refractoriness. Repolarization abnormalities typically evolve as a consequence of impaired function of outward K+ currents in cardiac myocytes, which may be caused by genetic defects or result from various acquired pathophysiological conditions, including electrical remodelling in cardiac disease, ion channel modulation by clinically used pharmacological agents, and systemic electrolyte disorders seen in heart failure, such as hypokalaemia. Cardiac electrical instability attributed to abnormal repolarization relies on the complex interplay between a provocative arrhythmic trigger and vulnerable arrhythmic substrate, with a central role played by the excessive prolongation of ventricular action potential duration, impaired intracellular Ca2+ handling, and slowed impulse conduction. This review outlines the electrical activity of ventricular myocytes in normal conditions and cardiac disease, describes classical electrophysiological mechanisms of cardiac arrhythmia, and provides an update on repolarization-related surrogates currently used to assess arrhythmic propensity, including spatial dispersion of repolarization, activation-repolarization coupling, electrical restitution, TRIaD (triangulation, reverse use dependence, instability, and dispersion), and the electromechanical window. This is followed by a discussion of the mechanisms that account for the dependence of arrhythmic vulnerability on the location of the ventricular pacing site. Finally, the review clarifies the electrophysiological basis for cardiac arrhythmia produced by hypokalaemia, and gives insight into the clinical importance and pathophysiology of drug-induced arrhythmia, with particular focus on class Ia (quinidine, procainamide) and Ic (flecainide) Na+ channel blockers, and class III antiarrhythmic agents that block the delayed rectifier K+ channel (dofetilide).
Insights
Abnormal ventricular repolarization, often due to impaired K+ currents, increases arrhythmia risk. This review details electrical instability mechanisms and assessment tools for cardiac patients.
Area of Science:
- Cardiovascular Electrophysiology
- Cardiac Arrhythmia Mechanisms
- Ion Channel Function
Background:
- Life-threatening tachyarrhythmia in cardiac patients stems from abnormal ventricular repolarization and refractoriness.
- Impaired outward K+ currents in cardiac myocytes, due to genetic or acquired factors, underlie repolarization abnormalities.
- Cardiac electrical instability involves interplay between triggers and substrates, notably prolonged action potential duration and impaired Ca2+ handling.
Purpose of the Study:
- To review ventricular myocyte electrical activity in normal and diseased states.
- To describe electrophysiological mechanisms of cardiac arrhythmia.
- To update on repolarization surrogates for assessing arrhythmic propensity.
Main Methods:
- Review of existing literature on cardiac electrophysiology and arrhythmia.
- Description of classical and contemporary electrophysiological mechanisms.
- Analysis of repolarization-related surrogates and their clinical relevance.
Main Results:
- Ventricular repolarization abnormalities are key to tachyarrhythmia development.
- Several surrogates, including spatial dispersion, restitution, and TRIaD, help assess arrhythmic propensity.
- Hypokalemia and specific antiarrhythmic drugs (Class Ia, Ic, III) significantly impact cardiac electrophysiology and arrhythmia risk.
Conclusions:
- Understanding ventricular repolarization is crucial for managing cardiac arrhythmia.
- Repolarization surrogates provide valuable insights into arrhythmic substrate.
- Hypokalemia and drug-induced effects necessitate careful clinical consideration in arrhythmia management.
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