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May 1, 2001Cardiovascular Research74 citationsOpen Access

Phase 2 prolongation, in the absence of instability and triangulation, antagonizes class III proarrhythmia

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LHLuc M. Hondeghem

Key Result

Combining erythromycin with almokalant reduced proarrhythmia as a function of action potential duration prolongation in isolated rabbit hearts (P<0.05).

Structured PICO

Does prolongation of the plateau of the action potential duration reverse proarrhythmia elicited by a class III antiarrhythmic agent in isolated rabbit hearts?

P
Population
Isolated hearts from female albino rabbits used to evaluate the effects of almokalant and erythromycin on cardiac electrophysiological parameters.
I
Intervention
Almokalant, erythromycin, and their combination
O
Outcome
Proarrhythmia estimated quantitatively by number of ectopic beatssurrogate

Prolongation of the action potential duration plateau without instability and triangulation can antagonize class III proarrhythmia.

Main Result

p-value: p=<0.05

Abstract

OBJECTIVE: To evaluate whether prolongation of the plateau of the action potential duration, in the absence of instability and triangulation, can reverse the proarrhythmia elicited by a class III antiarrhythmic agent. METHODS: The effects of almokalant, erythromycin and their combination, on cardiac electrophysiological parameters (action potential duration (APD), instability, triangulation and ectopics) were evaluated in isolated hearts from female albino rabbits. In this study, proarrhythmia was estimated quantitatively by number of ectopic beats. RESULTS: Erythromycin lengthened the APD primarily by a prolongation of the plateau, while having only minor effects upon phase 3 repolarization. The prolongation did not induce much instability, triangulation or reverse use dependence and, as expected, erythromycin did not induce significant proarrhythmia. Almokalant also lengthened APD, but it did not lengthen the plateau; instead, it prolonged phase 3 repolarization. The prolongation markedly triangulated the action potential, elicited much instability and marked reverse use dependence. This combination of effects induced very marked proarrhythmia. When almokalant and erythromycin were combined, their effects upon APD appeared additive: both the plateau and the repolarization phase were prolonged. However, the larger prolongation of APD did not lead to more proarrhythmia; this suggests that a prolongation of APD is not proarrhythmic per se. On the contrary, proarrhythmia as a function of APD prolongation was reduced in the presence of erythromycin (P<0.05). CONCLUSION: Instability plus triangulation consistently lead to serious proarrhythmia especially when combined with reverse use dependence, but prolongation of APD in itself is not necessarily proarrhythmic. In fact, APD prolongation in the absence of instability and triangulation can be antiarrhythmic.

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Cite This Study

Luc M. Hondeghem (2001) studied Proarrhythmia. Almokalant and erythromycin combination vs. Almokalant alone and erythromycin alone was evaluated on Proarrhythmia (estimated quantitatively by number of ectopic beats) (p=<0.05). Combining erythromycin with almokalant reduced proarrhythmia as a function of action potential duration prolongation in isolated rabbit hearts (P<0.05).

synapsesocial.com/papers/6a627546f2fc5dc74fc23c9chttps://doi.org/10.1016/s0008-6363(01)00259-0
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