The action of ether and methoxyflurane on synaptic transmission in isolated preparations of the mammalian cortex.
- 1 June 1975
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 248 (1) , 121-142
- https://doi.org/10.1113/jphysiol.1975.sp010965
Abstract
1. The actions of ether and methoxyflurane on the evoked potentials of in vitro preparations of the guinea-pig olfactory cortex were studied. Following stimulation of the lateral olfactory tract (l.o.t.) evoked potentials could be recorded from the cortical surface; these potentials consisted of an initial wave (the compound action potential of the l.o.t.) followed by a negative field potential which was associated with the synchronous excitation of many superficial excitatory synapses (population e.p.s.p.). Superimposed on the population e.p.s.p. was a number of positive peaks. These positive peaks reflect the synchronous discharge of many neurones and so have been called population spikes. 2. When ether or methoxyflurane was added to the gas stream that superfused the surface of the preparations, the population e.p.s.p.s. and population spikes were depressed at lower concentrations than those required to depress the compound action potential of the afferent fibres. 3. The evoked activity of individual cells in the cortex was depressed by ether and methoxyflurane. However, five of the twelve cells tested in ether showed an increase in their evoked activity at concentrations below 4-5%, but at higher concentrations these cells also became depressed. 4. Both ether and methoxyflurane depressed the sensitivity of cortical neurones to iontophoretically applied L-glutamate and may similarly depress the sensitivity of the post-synaptic membrane to the released transmitter substance. 5. Neither anaesthetic appeared to increase the threshold depolarization required for nerve impulse generation. Thus, the decrease of the discharge of the post-synaptic cells was primarily caused by a depression of chemical transmission. 6. Ether caused some cells in the cortex to alter their normal pattern of synaptically evoked discharge and both anaesthetics induced similar changes during excitation by glutamate.Keywords
This publication has 21 references indexed in Scilit:
- On the mechanism of halothane anaesthesiaThe Journal of Physiology, 1973
- Neuronal activity in the association cortex of the cat during sleep, wakefulness and anesthesiaBrain Research, 1973
- On the mechanism of barbiturate anaesthesiaThe Journal of Physiology, 1972
- Potentiation and depression of synaptic transmission in the olfactory cortex of the guinea‐pigThe Journal of Physiology, 1972
- Equipotent Alveolar Concentrations of Methoxyflurane, Halothane, Diethyl Ether, Fluroxene, Cyclopropane, Xenon and Nitrous Oxide in the DogAnesthesiology, 1965
- MECHANISM OF BLOCKADE OF SYNAPTIC TRANSMISSION IN MAMMALIAN SPINAL CORD BY DIETHYL ETHER AND BY THIOPENTAL1963
- THE EXCITATION AND DEPRESSION OF SPINAL NEURONES BY STRUCTURALLY RELATED AMINO ACIDSJournal of Neurochemistry, 1960
- Effects of anaesthetics on metabolism and on transmission in sympathetic ganglia of rats. Measurement of glucose in microgram quantities using glucose oxidaseThe Journal of Physiology, 1955
- A further study of the statistical composition of the end‐plate potentialThe Journal of Physiology, 1955
- SELECTIVE ACTION OF ANESTHETICS ON SYNAPSES AND AXONS IN MAMMALIAN SYMPATHETIC GANGLIAJournal of Neurophysiology, 1952