Membrane and Synaptic Actions of Halothane on Rat Hippocampal Pyramidal Neurons and Inhibitory Interneurons
Open Access
- 15 August 2000
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 20 (16) , 5915-5923
- https://doi.org/10.1523/jneurosci.20-16-05915.2000
Abstract
A relatively small number of inhibitory interneurons can control the excitability and synchronization of large numbers of pyramidal neurons in hippocampus and other cortical regions. Thus, anesthetic modulation of interneurons could play an important role during anesthesia. The aim of this study was to investigate effects of a general anesthetic, halothane, on membrane and synaptic properties of rat hippocampal interneurons. GABA receptor-mediated IPSCs were recorded with whole-cell patch-clamp techniques in visually identified CA1 pyramidal cells and interneurons located at the border of stratum lacunosum-moleculare and stratum radiatum. Halothane (0.35 mm ≅ 1.2 vol%) depressed evoked IPSC amplitudes recorded from both pyramidal cells and inhibitory interneurons. Also, halothane considerably prolonged the decay time constant of evoked IPSCs in pyramidal cells and interneurons. The frequencies of miniature IPSCs were increased by halothane (two- to threefold) in both types of neuron. On the other hand, halothane effects on resting membrane potentials were variable but minimal in both types of neurons. In current-clamp recordings, halothane depressed EPSP amplitudes and increased IPSP amplitudes recorded from both types of neurons. In addition, halothane increased the failure rate of synaptically evoked action potentials. Taken together, these data provide evidence that halothane increases GABAAreceptor-mediated synaptic inhibition between synaptically connected interneurons and depresses excitatory transmission, similar to effects observed in pyramidal neurons.Keywords
This publication has 50 references indexed in Scilit:
- Complementary regulation of anaesthetic activation of human (α6β3γ2L) and Drosophila (RDL) GABA receptors by a single amino acid residueThe Journal of Physiology, 1999
- Dual Actions of Volatile Anesthetics on GABAAIPSCsAnesthesiology, 1999
- Multiple ionic mechanisms mediate inhibition of rat motoneurones by inhalation anaestheticsThe Journal of Physiology, 1998
- Halothane Blocks Synaptic Excitation of Inhibitory InterneuronsAnesthesiology, 1996
- Volatile Anesthetics Depress Glutamate Transmission Via Presynaptic ActionsAnesthesiology, 1996
- Inhibition by Volatile Anesthetics of Endogenous Glutamate Release from Synaptosomes by a Presynaptic MechanismAnesthesiology, 1995
- Volatile anesthetics bidirectionally and stereospecifically modulate ligand binding to GABA receptorsEuropean Journal of Pharmacology: Molecular Pharmacology, 1994
- Physiological evidence for two distinct GABAA responses in rat hippocampusNeuron, 1993
- The action of anaesthetics and high pressure on neuronal discharge patternsGeneral Pharmacology: The Vascular System, 1992
- Anesthetic Effects on Resting Membrane Potential Are Voltage-dependent and Agent-specificAnesthesiology, 1991