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Updated: Aug 14, 2026

Methods for ECG Evaluation of Indicators of Cardiac Risk, and Susceptibility to Aconitine-induced Arrhythmias in Rats Following Status Epilepticus
Published on: April 5, 2011
Electrophysiology, hemodynamic and arrhythmia efficacy model studies on encainide
Abstract:
Encainide is a class IC agent possessing a broad spectrum of antiarrhythmic actions in a variety of animal models. It increases the ventricular fibrillation threshold of the perfused rabbit heart and in situ dog myocardium. Encainide suppresses atrial fibrillation resulting from topical application of aconitine in the anesthetized dog and ventricular fibrillation induced by chloroform asphyxiation in the mouse. In these latter 2 models, encainide is approximately 7 to 11 and 16 to 18 times more potent, respectively, on a milligram basis than quinidine. In anesthetized dogs encainide converts ouabain-induced tachyarrhythmias to normal sinus rhythm at a mean intravenous dose of 0.67 mg/kg. Single doses of 0.5 mg/kg intravenously or 1 mg/kg orally significantly reduced ventricular ectopy in conscious dogs 18 to 22 hours after 2-stage ligation of the left coronary artery. At doses and plasma concentrations exceeding efficacious therapeutic levels, encainide has no major negative inotropic effects and does not compromise cardiac function or hemodynamics. It is devoid of peripheral autonomic or mediator-evoked responses and, in particular, lacks anticholinergic actions. Encainide is rapidly absorbed by all routes of administration and extensively metabolized by the liver. The major metabolites, O-demethyl encainide and 3-methoxy-O-demethyl encainide, have been shown to have quantitatively different, but qualitatively similar, profiles of pharmacodynamic effects. Subacute and chronic administration of encainide at doses representing 11 times an effective oral human dose have produced no distinct or consistent toxicologic findings. Carcinogenicity and mutagenicity studies were negative.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Encainide, a class IC antiarrhythmic, effectively treats various cardiac arrhythmias in animal models. It demonstrates potent efficacy with minimal adverse effects on cardiac function and hemodynamics.
Area of Science:
- Pharmacology
- Cardiovascular Medicine
- Drug Development
Background:
- Encainide is a class IC antiarrhythmic agent.
- Existing antiarrhythmics have varying efficacy and side effect profiles.
Purpose of the Study:
- To evaluate the antiarrhythmic efficacy and safety of encainide in diverse animal models.
- To compare encainide's potency to quinidine.
Main Methods:
- Ventricular fibrillation threshold testing in rabbit and dog hearts.
- Suppression of induced atrial and ventricular fibrillation in dogs and mice.
- Assessment of hemodynamic and inotropic effects in dogs.
- Pharmacokinetic and metabolic profiling.
- Toxicology, carcinogenicity, and mutagenicity studies.
Main Results:
- Encainide increased ventricular fibrillation threshold and suppressed induced arrhythmias.
- It demonstrated greater potency than quinidine in specific models.
- Encainide converted ouabain-induced tachyarrhythmias and reduced ventricular ectopy.
- No significant negative inotropic effects or compromise of cardiac function were observed.
- Metabolites exhibited similar pharmacodynamic profiles.
- Toxicology studies were negative.
Conclusions:
- Encainide exhibits broad-spectrum antiarrhythmic activity.
- It is well-tolerated with no significant adverse effects on cardiac function.
- Encainide represents a potentially valuable therapeutic agent for cardiac arrhythmias.
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