Mechanisms of Barbiturate Inhibition of Acetylcholine Receptor Channels
Open Access
- 1 March 1997
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 109 (3), 401-414
- https://doi.org/10.1085/jgp.109.3.401
Abstract
We used patch clamp techniques to study the inhibitory effects of pentobarbital and barbital on nicotinic acetylcholine receptor channels from BC3H-1 cells. Single channel recording from outside-out patches reveals that both drugs cause acetylcholine-activated channel events to occur in bursts. The mean duration of gaps within bursts is 2 ms for 0.1 mM pentobarbital and 0.05 ms for 1 mM barbital. In addition, 1 mM barbital reduces the apparent single channel current by 15%. Both barbiturates decrease the duration of openings within a burst but have only a small effect on the burst duration. Macroscopic currents were activated by rapid perfusion of 300 μM acetylcholine to outside-out patches. The concentration dependence of peak current inhibition was fit with a Hill function; for pentobarbital, K i = 32 μM, n = 1.09; for barbital, K i = 1900 μM, n = 1.24. Inhibition is voltage independent. The kinetics of inhibition by pentobarbital are at least 30 times faster than inhibition by barbital (3 ms vs. 100 μM pentobarbital.Keywords
This publication has 30 references indexed in Scilit:
- Evidence for Direct Actions of General Anesthetics on an Ion Channel ProteinAnesthesiology, 1994
- Insensitivity of P- Type Calcium Channels to Inhalational and Intravenous General AnestheticsAnesthesiology, 1994
- Barbiturate Action Is Dependent on the Conformational State of the Acetylcholine ReceptorAnesthesiology, 1993
- Use-dependent pentobarbital block of kainate and quisqualate currentsBrain Research, 1993
- The Role of the GABAA Receptor/Chloride Channel Complex in AnesthesiaAnesthesiology, 1993
- Effects of pentobarbitone on the properties of nicotinic channels of chromaffin cellsEuropean Journal of Pharmacology, 1991
- Molecular Actions of Pentobarbital Isomers on Sodium Channels from Human Brain CortexAnesthesiology, 1990
- An open-channel blocker interacts with adjacent turns of α-helices in the nicotinic acetylcholine receptorNeuron, 1990
- Actions of General Anesthetics on Acetylcholine Receptor-rich Membranes from Torpedo californicaAnesthesiology, 1986
- Ionic permeation and blockade in Ca2+-activated K+ channels of bovine chromaffin cells.The Journal of general physiology, 1984