Differential Effects of Etomidate, Propofol, and Midazolam on Calcium and Potassium Channel Currents in Canine Myocardial Cells
Open Access
- 1 November 1996
- journal article
- laboratory investigations
- Published by Wolters Kluwer Health in Anesthesiology
- Vol. 85 (5) , 1092-1099
- https://doi.org/10.1097/00000542-199611000-00018
Abstract
Background: Intravenous anesthetics etomidate, propofol, and midazolam produce negative inotropic effects of various degrees. The mechanism underlying these differences is largely unknown. Methods: The effects of intravenous anesthetics on L-type Ca2+, transient outward and inward-rectifier K+ channel currents (ICa, IKto, and IK1) were compared in canine ventricular cells using the whole-cell voltage-clamp technique. ICa and IK were elicited by progressively depolarizing cells from -40 to +40 mV, and from -90 to +60 mV, respectively. The peak amplitude and time-dependent inactivation rate of ICa and IK were measured before, during, and after the administration of equimolar concentrations (5, 30, or 60 microM) of etomidate, propofol, or midazolam. Results: Exposure to etomidate, propofol, and midazolam produced a concentration-dependent inhibition of ICa. Midazolam was the most potent intravenous anesthetic; at 60 microM, etomidate, propofol, and midazolam decreased peak ICa by 16 +/- 4% (mean +/- SEM), 33 +/- 5%, and 47 +/- 5%, respectively. Etomidate, propofol, and midazolam given in a 60-microM concentration decreased IKto by 8 +/- 3%, 9 +/- 2%, and 23 +/- 3%, respectively. IK1 was decreased by 60 microM etomidate and midazolam by 20 +/- 6% and 14% +/- 5%, respectively. Propofol had no effect on IK1. Conclusions: At equimolar concentrations, intravenous anesthetics decreased the peak ICa, IKto, and IK1 with various degrees of potency. Effects of anesthetics on ICa were significantly greater compared with their effects on K+ currents. These findings suggest that the negative inotropic actions of etomidate, propofol, and midazolam are related, at least in part, to decreased ICa. Some effects, such as IK inhibition, may partially antagonize effects of decreased ICa. Indeed, the final effect of these intravenous anesthetics on myocardium will be the sum of these and other sarcolemmal and intracellular effects.Keywords
This publication has 37 references indexed in Scilit:
- Cardiodynamic Effects of Propofol in Comparison With ThiopentalAnesthesia & Analgesia, 1991
- Influence of Thiopental, Etomidate, and Propofol on Regional Myocardial Function in the Normal and Acute Ischemic Heart Segment in DogsAnesthesia & Analgesia, 1990
- In Vitro Effects of Etomidate on Intrinsic Myocardial Contractility in the RatAnesthesiology, 1990
- PropofolAnesthesiology, 1989
- CARDIOVASCULAR EFFECTS OF PROPOFOL IN THE ANAESTHETIZED DOGBritish Journal of Anaesthesia, 1989
- HAEMODYNAMIC CHANGES DURING ANAESTHESIA INDUCED AND MAINTAINED WITH PROPOFOLBritish Journal of Anaesthesia, 1988
- Effects of Midazolam on the Coronary Circulation in Patients with Coronary Artery DiseaseAnesthesiology, 1986
- MidazolamAnesthesiology, 1985
- Circulatory Responses to Midazolam AnesthesiaAnesthesia & Analgesia, 1983
- HAEMODYNAMIC EFFECTS OF MIDAZOLAM AND THIOPENTONE DURING INDUCTION OF ANAESTHESIA FOR CORONARY ARTERY SURGERYBritish Journal of Anaesthesia, 1982