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May 1, 1968Circulation Research190 citationsOpen Access

Effects of Propranolol on the Transmembrane Potentials of Ventricular Muscle and Purkinje Fibers of the Dog

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LDLarry D. DavisJTJohn V. Temte

Structured PICO

Does propranolol alter the transmembrane potentials and electrophysiological properties of ventricular muscle and Purkinje fibers in dog hearts?

P
Population
Papillary muscle-false tendon tissue preparations isolated from dog hearts
I
Intervention
Propranolol (0.1 to 20.0 mg/liter) perfused in Tyrode's solution
C
Comparator
Control conditions (absence of propranolol or epinephrine alone)
O
Outcome
Transmembrane action potentials (velocity of upstroke, overshoot, repolarization, effective refractory period)surrogate

Propranolol demonstrates direct electrophysiological effects on ventricular and Purkinje fibers, including blocking catecholamine-induced depolarization, which may explain its antiarrhythmic properties.

Abstract

Papillary muscle-false tendon tissue preparations isolated from dog hearts were perfused with Tyrode's solution containing propranolol in concentrations ranging from 0.1 to 20.0 mg/liter. Transmembrane action potentials of both ventricular muscle fibers and Purkinje fibers were recorded. With sufficient concentration of drug, the velocity of the upstroke and the overshoot of both fiber types decreased. The curve relating upstroke velocity to level of membrane potential for Purkinje fibers was displaced to the right and down. The ability of both ventricular muscle fibers and Purkinje fibers to respond to rapid frequencies of stimulation was decreased. Repolarization of Purkinje fibers was accelerated by propranolol, but repolarization of ventricular muscle fibers was unaffected. Duration of the effective refractory period of Purkinje fibers decreased; that of ventricular muscle fibers was unchanged. Graded responses and decremental impulse conduction in Purkinje fibers were abolished in the presence of propranolol. Low doses of propranolol which caused no change in the transmembrane potential completely blocked the increase in Purkinje diastolic depolarization normally induced by epinephrine. The possible mechanisms by which propranolol might exert its antiarrhythmic actions on ventricular arrhythmias were discussed.

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Cite This Study

Davis et al. (1968) studied this question.

synapsesocial.com/papers/6a158146cb801b7f954e95eehttps://doi.org/10.1161/01.res.22.5.661
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effect of Calcium Concentration on the Transmembrane Potentials of Purkinje Fibers1967 · 81 citations
  2. 2Interrelationships Between Automaticity and Conduction in Purkinje Fibers1967 · 273 citations
  3. 3Durations of Transmembrane Action Potentials and Functional Refractory Periods of Canine False Tendon and Ventricular Myocardium:1965 · 105 citations
  4. 4Antiarrhythmic actions of propranolol in the dog heart-lung preparation1967 · 16 citations
  5. 5The influence of dichloroiso-proterenol (DCI) and related compounds upon ouabain and acetylstrophanthidin induced cardiac arrhythmias.1961 · 76 citations