Procaine amide exerted a complex action on cardiac excitability in sheep Purkinje fibers by decreasing membrane conductance, primarily sodium conductance.
The microelectrode technique of intracellular constant current application and intracellular transmembrane voltage recording was used to study the effects of procaine amide (PA) on cardiac excitability. We measured the effect of PA in a concentration equivalent to clinically effective antiarrhythmic plasma levels (5 mug/ml), on nonnormalized and normalized strength-duration and charge-duration curves, membrane characteristics, and cable properties in long sheep Purkinje fibers in normal Tyrode's solution with K+0 = 4.0 mM. PA exerted a complex action and influenced passive resistance-capacitance (RC) and active generator properties by decreasing membrane conductance, primarily membrane sodium conductance. Whether PA increased or decreased excitability depended on the relative contribution of the drug-induced alterations in passive and active membrane properties. These findings may explain, in part, the conflicting results of studies on cardiac excitability in the whole animal, as well as the clinical observation that PA may exert both artiarrhythmic and arrhythmogenic effects. The primary mechanism by which PA modifies excitability would seem to differ considerably from that of the structurally similar local anesthetic agent lidocaine.
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Arnsdorf et al. (Sun,) reported a other. Procaine amide was evaluated on Cardiac excitability (strength-duration and charge-duration curves, membrane characteristics, and cable properties). Procaine amide exerted a complex action on cardiac excitability in sheep Purkinje fibers by decreasing membrane conductance, primarily sodium conductance.