Anesthetic Effects on Mitochondrial ATP-sensitive K Channel
- 1 December 2001
- journal article
- research article
- Published by Wolters Kluwer Health in Anesthesiology
- Vol. 95 (6) , 1435-1440
- https://doi.org/10.1097/00000542-200112000-00024
Abstract
Background: Volatile anesthetics show an ischemic preconditioning-like cardioprotective effect, whereas intravenous anesthetics have cardioprotective effects for ischemic-reperfusion injury. Although recent evidence suggests that mitochondrial adenosine triphosphate-regulated potassium (mitoK(ATP)) channels are important in cardiac preconditioning, the effect of anesthetics on mitoK(ATP) is unexplored. Therefore, the authors tested the hypothesis that anesthetics act on the mitoK(ATP) channel and mitochondrial flavoprotein oxidation. Methods: Myocardial cells were isolated from adult guinea pigs. Endogenous mitochondrial flavoprotein fluorescence, an indicator of mitochondrial flavoprotein oxidation, was monitored with fluorescence microscopy while myocytes were exposed individually for 15 min to isoflurane, sevoflurane, propofol, and pentobarbital. The authors further investigated the effect of 5-hydroxydeanoate, a specific mitoK(ATP) channel antagonist, on isoflurane- and sevoflurane-induced flavoprotein oxidation. Additionally, the effects of propofol and pentobarbital on isoflurane-induced flavoprotein oxidation were measured. Results: Isoflurane and sevoflurane induced dose-dependent increases in flavoprotein oxidation (isoflurane: R2 = 0.71, n = 50; sevoflurane: R2 = 0.86, n = 20). The fluorescence increase produced by both isoflurane and sevoflurane was eliminated by 5-hydroxydeanoate. Although propofol and pentobarbital showed no significant effects on flavoprotein oxidation, they both dose-dependently inhibited isoflurane-induced flavoprotein oxidation. Conclusions: Inhalational anesthetics induce flavoprotein oxidation through opening of the mitoK(ATP) channel. This may be an important mechanism contributing to anesthetic-induced preconditioning. Cardioprotective effects of intravenous anesthetics may not be dependent on flavoprotein oxidation, but the administration of propofol or pentobarbital may potentially inhibit the cardioprotective effect of inhalational anesthetics.Keywords
This publication has 26 references indexed in Scilit:
- Sevoflurane Reduces Myocardial Infarct Size and Decreases the Time Threshold for Ischemic Preconditioning in DogsAnesthesiology, 1999
- Anesthetic-induced PreconditioningAnesthesiology, 1997
- Isoflurane Mimics Ischemic Preconditioning via Activation of KATPChannelsAnesthesiology, 1997
- Volatile Anesthetics Protect the Ischemic Rabbit Myocardium from InfarctionAnesthesiology, 1997
- Comparative effects of halothane, enflurane, isoflurane and sevoflurane on function and metabolism in the ischaemic rat heartBritish Journal of Anaesthesia, 1995
- ATP sparing effect of isoflurane during ischaemia and reperfusion of the canine heartBritish Journal of Anaesthesia, 1995
- The Effects of Isoflurane on Regional Myocardial Contractility and Metabolism in Stunned Myocardium in Acutely Instrumented DogsAnesthesia & Analgesia, 1994
- Effects of the KATP channel opener bimakalim on coronary blood flow, monophasic action potential duration, and infarct size in dogs.Circulation, 1994
- ATP-sensitive K+ channel in the mitochondrial inner membraneNature, 1991
- Preconditioning with ischemia: a delay of lethal cell injury in ischemic myocardium.Circulation, 1986