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H J Duff

Publications and source records attributed to H J Duff.

128 records · Page 8Linked to original sources

Electropharmacologic synergism with mexiletine and quinidine.

We have previously shown that combination therapy with mexiletine and quinidine is more effective and causes fewer side effects than either agent alone in the treatment of patients with serious ventricular arrhythmias. To further assess this enhanced antiarrhythmic effect, the electrophysiologic actions of mexiletine and quinidine alone and in combination were evaluated in isolated perfused rabbit hearts. Dose-response curves were constructed for right ventricular effective refractory period, epicardial monophasic action potential duration, and conduction time (the time from pacing stimulus to the upstroke of the monophasic action potential signals) during constant rate pacing. No significant changes in these parameters were seen in 15 preparations treated with saline over a duration of 1 h (a time equal to the longest experiments). With gradually increasing concentrations of mexiletine (2.3-36 microM) prolongation of conduction time (12 +/- 5 msec, mean +/- SE, p less than 0.05) paralleled change in ventricular refractoriness (20 +/- 5 msec, mean +/- SE, p less than 0.05) but occurred in the absence of any significant change in monophasic action potential duration. With gradually increasing concentrations of quinidine (0.55-34 microM/L) prolongation of ventricular refractoriness (65 +/- 7 msec, mean +/- SE, p less than 0.01) and monophasic action potential duration (65 +/- 7 msec, mean +/- SE, p less than 0.01) occurred in parallel and at concentrations less than those required to prolong conduction time.(ABSTRACT TRUNCATED AT 250 WORDS)

Action Potentials↗

Mexiletine and quinidine in combination in an ischemic model: supra-additive antiarrhythmic and electrophysiologic actions.

Combination therapy with mexiletine and quinidine has been shown to be more effective than either agent alone in the treatment of ventricular tachycardia in humans. To assess the electrophysiologic correlates of this enhanced antiarrhythmic effect, concentration-response relationships of mexiletine and quinidine alone and in combination were evaluated in 117 isolated perfused rabbit hearts after circumflex occlusion-reperfusion. Normal and infarct zone recordings included monophasic action potential duration, ventricular effective refractory period, and conduction time during constant rate pacing. Ventricular fibrillation occurred in all 18 "vehicle only"-treated hearts during programmed electrical stimulation (S2). High-concentration mexiletine therapy was more effective in protecting against malignant ventricular arrhythmias than was quinidine. Both therapies produced concentration-dependent prolongation of ischemic zone conduction and refractoriness. When low concentrations of mexiletine and quinidine were combined (concentrations which when given alone had little or no electrophysiologic or antiarrhythmic activity) antiarrhythmic activity was seen which was greater than that seen with high-concentration single treatment. Low-concentration combination therapy was also associated with significantly greater prolongation of infarct zone conduction time and refractoriness. In conclusion, low-concentration combination treatment with mexiletine and quinidine prolonged infarct zone conduction time and refractoriness to a greater extent than was seen with single therapy at matched concentrations. These electrophysiologic effects were associated with enhanced antiarrhythmic activity.

Action Potentials↗