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February 1, 1974Circulation Research282 citations

Effects of Agents which Inhibit the Slow Channel on Sinus Node Automaticity and Atrioventricular Conduction in the Dog

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Douglas P. Zipes
Douglas P. ZipesElectrophysiology
JFJohn C. FischerUniversity of Michigan

Key Result

Slow-channel inhibiting agents directly depressed sinus node discharge rate and AV nodal conduction in dogs, effects that were reversed by beta-receptor stimulation.

Structured PICO

Do slow-channel inhibiting agents depress sinus node automaticity and AV nodal conduction in a canine model?

P
Population
Open-chest dogs treated with atropine and propranolol to study the effects of slow-channel inhibitors on sinus node automaticity and AV nodal conduction.
I
Intervention
Perfusion of slow-channel inhibiting agents (verapamil, D600, manganous chloride, and lanthanum chloride) into the arteries to the sinus node and AV node
O
Outcome
Sinus node discharge rate and AV nodal conduction (including effective and functional AV nodal refractory period)surrogate

Slow-channel inhibitors directly depress sinus node automaticity and AV nodal conduction, effects that are reversible by beta-adrenergic stimulation.

Abstract

A slow ionic current carried by calcium, sodium, or both constitutes transmembrane ionic flow through the slow channel; such a current may be involved in normal action potentials of sinus and atrioventricular (AV) nodal cells. In this study, we investigated the effects of the slow-channel inhibiting agents verapamil, D600, manganous chloride, and lanthanum chloride on sinus node automaticity and AV nodal conduction in open-chest dogs treated with atropine (0.5 mg/kg) and propranolol (1.0 mg/kg). The arteries to the sinus node and the AV node were cannulated and perfused with agents that inhibit the slow current. These agents slowed sinus node discharge rate, depressed AV nodal conduction, and lengthened the effective and the functional AV nodal refractory period. Effects were dose related and reversed with time. His-Purkinje conduction remained normal. Isoproterenol and epinephrine reversed the effects of slow-channel inhibiting agents, but calcium, sodium, glucagon, and phenylephrine did not. Concentrations of propranolol which produced beta-receptor blockade prevented Isoproterenol-induced reversal of the effects of slow-channel inhibitors. We concluded that (1) agents which inhibit the slow channel directly depress sinus node discharge rate and AV nodal conduction, (2) effects of slow-channel inhibiting agents are not mediated through the activation of cholinergic discharge or inhibition of adrenergic discharge, and (3) beta-receptor stimulation reverses these effects.

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Cite This Study

Zipes et al. (1974) studied Sinus node automaticity and AV nodal conduction. Slow-channel inhibiting agents (verapamil, D600, manganous chloride, and lanthanum chloride) was evaluated on Sinus node discharge rate and AV nodal conduction. Slow-channel inhibiting agents directly depressed sinus node discharge rate and AV nodal conduction in dogs, effects that were reversed by beta-receptor stimulation.

synapsesocial.com/papers/6a1fac1d7f8f0ece98f87d9ehttps://doi.org/10.1161/01.res.34.2.184
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