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May 6, 1996Pharmacotherapy The Journal of Human Pharmacology and Drug Therapy2 citations

Electrophysiologic and Electrocardiographic Pharmacodynamics of Cocaine

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JTJames E. TisdaleMDMurray P. DucharmeHSHisashi Shimoyama

Structured PICO

Does continuous cocaine infusion alter electrophysiologic and electrocardiographic parameters in anesthetized dogs?

P
Population
10 anesthetized dogs with normal intact hearts
I
Intervention
Continuous 3-hour infusion of cocaine 0.11 mg/kg/minute (total dose 20 mg/kg)
C
Comparator
Placebo infusion
O
Outcome
Relationships between plasma cocaine concentrations and electrophysiologic and electrocardiographic effects (heart rate, mean arterial pressure, effective refractory period, QRS duration, PR, QTc, and JTc intervals)surrogate

Cocaine infusion in a canine model demonstrates complex pharmacodynamic relationships with electrophysiologic parameters, particularly increasing effective refractory period and PR interval.

Limitations

  • Further study is required to determine applicability of this model for prediction of cocaine's cardiovascular effects in humans

Abstract

To determine and describe relationships between plasma cocaine concentrations and electrophysiologic and electrocardiographic effects, 10 anesthetized dogs with normal intact hearts received a continuous 3-hour infusion of cocaine 0.11 mg/kg/minute (total dose 20 mg/kg). Data were collected as part of a randomized, blinded, placebo-controlled study investigating the effects of cocaine on ventricular fibrillation threshold. Every 30 minutes during infusion of cocaine or placebo and for 3 hours after discontinuation of the infusion, heart rate and mean arterial pressure were determined, effective refractory period (ERP) was measured, and QRS duration and PR, QTc, and JTc intervals were recorded. At the time of each 30-minute measurement, arterial blood was obtained to determine plasma cocaine concentrations. Hysteresis curves were observed for cocaine-induced increases in ERP and PR interval. The effects of cocaine on QRS duration and QTc and JTc intervals were not well described by tested models. Pharmacodynamic modeling techniques may be used to describe relationships between plasma cocaine concentrations and specific cardiovascular effects of cocaine. Further study is required to determine applicability of this model for prediction of cocaine's cardiovascular effects in humans.

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Cite This Study

Tisdale et al. (1996) studied this question.

synapsesocial.com/papers/6a9848ef9835657fd76c8185https://doi.org/10.1002/j.1875-9114.1996.tb02975.x
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