Mechanism of the Negative Inotropic Effect of Thiopental in Isolated Ferret Ventricular Myocardium
Open Access
- 1 February 1995
- journal article
- laboratory investigations
- Published by Wolters Kluwer Health in Anesthesiology
- Vol. 82 (2) , 436-450
- https://doi.org/10.1097/00000542-199502000-00014
Abstract
Background: Thiopental's myocardial depressant effects are well known and most likely involve some alteration in intracellular Ca2+ homeostasis. The aim of this study was to investigate the mechanisms of thiopental's negative inotropic effects and its underlying mechanism in isolated ferret ventricular myocardium (which shows physiologic characteristics similar to human ventricular myocardium), and in frog ventricular myocardium, in which Ca2+ ions for myofibrillar activation are derived almost entirely from transsarcolemmal influx. Methods: The authors analyzed the effects of thiopental after beta-adrenoceptor blockade on variables of contractility and relaxation, and on the free intracellular Ca2+ transient detected with the Ca(2+)-regulated photoprotein aequorin. Thiopental's effects also were evaluated in ferret right ventricular papillary muscles in which the sarcoplasmic reticulum (SR) function was impaired by ryanodine and in frog ventricular strips with little or no SR function. Results: At concentration > or = 10(-4) M, which is in the high range of the clinically encountered free plasma thiopental concentrations, thiopental decreased contractility and the amplitude of the intracellular Ca2+ transient. At equal peak force, peak aequorin luminescence in 10(-4) M thiopental and [Ca2+]0 > 2.25 mM was slightly smaller than that in control conditions at [Ca2+]o = 2.25 mM. This indicates that thiopental causes a small increase in myofibrillar Ca2+ sensitivity. After inactivation of sarcoplasmic reticulum Ca2+ release with 10(-6) M ryanodine, a condition in which myofibrillar activation depends almost exclusively on transsarcolemmal Ca2+ influx, thiopental caused a further decrease in contractility and in the amplitude of the intracellular Ca2+ transient, and thiopental's relative negative inotropic effect was not different from that in control muscles not exposed to ryanodine. Thiopental, > or = 10(-4) M, decreased contractility in frog ventricular myocardium. Conclusions: These findings indicate that the direct negative inotropic effect of thiopental results from a decrease in intracellular Ca2+ availability. At least part of thiopental's action is caused by inhibition of transsarcolemmal Ca2+ influx. These effects become apparent at concentrations routinely present during intravenous induction with thiopental.Keywords
This publication has 28 references indexed in Scilit:
- Comparative Myocardial Depressive Effects of Propofol and ThiopentalAnesthesia & Analgesia, 1993
- Comparison of Etomidate, Ketamine, Midazolam, Propofol, and Thiopental on Function and Metabolism of Isolated HeartsAnesthesia & Analgesia, 1992
- Propofol and Thiopental Depression of Myocardial Contractility A Comparative Study of Mechanical and Electrophysiologic Effects in Isolated Guinea Pig Ventricular MuscleAnesthesia & Analgesia, 1992
- Mechanism of the Positive Inotropic Effect of Ketamine in Isolated Ferret Ventricular Papillary MuscleAnesthesiology, 1991
- Influence of Thiopental, Etomidate, and Propofol on Regional Myocardial Function in the Normal and Acute Ischemic Heart Segment in DogsAnesthesia & Analgesia, 1990
- Effects of Thiopental on Tension Development, Action Potential, and Exchange of Calcium and Potassium in Rabbit Ventricular MyocardiumJournal of Cardiovascular Pharmacology, 1981
- Effects of barbiturate anesthetics and ketamine on the force-frequency relation of cardoac muscleEuropean Journal of Pharmacology, 1979
- [31] Practical aspects of the use of aequorin as a calcium indicator: Assay, preparation, microinjection, and interpretation of signalsPublished by Elsevier ,1978
- EFFECT OF THIOPENTONE ON MYOCARDIAL FUNCTIONBritish Journal of Anaesthesia, 1977
- Reduction by thiopental of the slow-channel-mediated action potential of canine papillary musclePflügers Archiv - European Journal of Physiology, 1977