Volatile general anaesthetics activate a novel neuronal K+ current
- 1 June 1988
- journal article
- Published by Springer Nature in Nature
- Vol. 333 (6174) , 662-664
- https://doi.org/10.1038/333662a0
Abstract
Although it is still controversial whether the primary target sites underlying general anaesthesia are proteins or lipids, it is generally thought that the ultimate targets are ion channels in nerve membranes. One approach to finding these targets is to study the effects of general anaesthetics on identified neurons, where differential effects on neuronal activity can be pursued to the molecular level. Here we report that amongst a group of apparently identical molluscan neurons having endogenous firing activity, a single cell displays an unusual sensitivity to volatile agents (which, at surgical levels, completely inhibit its activity). We further show that this sensitivity is due to a novel anaesthetic-activated K+ current, which is found in the sensitive cell but not in the surrounding insensitive cells. This K+ conductance is not appreciably voltage-gated and persists for as long as the anaesthetic is present. The response to anaesthetics is completely reversible and saturates at low anaesthetic partial pressures: the half-maximal response for halothane occurs at 0.0063 atm, close to its minimum alveolar concentration (0.0075 atm) in man.Keywords
This publication has 15 references indexed in Scilit:
- The generation and modulation of endogenous rhythmicity in the aplysia bursting pacemaker neurone R15Progress in Biophysics and Molecular Biology, 1985
- The Nature of The Site of General AnesthesiaPublished by Elsevier ,1985
- Do general anaesthetics act by competitive binding to specific receptors?Nature, 1984
- Effects of Anesthetics on the Squid Giant AxonPublished by Elsevier ,1984
- Membrane interactions with general and local anaesthetics: A review of molecular hypotheses of anaesthesiaMolecular Aspects of Medicine, 1983
- Molecular mechanisms of general anaesthesiaNature, 1982
- Serotonin modulates a specific potassium current in the sensory neurons that show presynaptic facilitation in Aplysia.Proceedings of the National Academy of Sciences, 1982
- Role of cyclic AMP in a serotonin-evoked slow inward current in snail neuronesNature, 1981
- SOLUBILITY COEFFICIENTS FOR INHALED ANAESTHETICS FOR WATER, OIL AND BIOLOGICAL MEDIABritish Journal of Anaesthesia, 1973
- Ultrastructure and histochemistry of neurosecretory cells and neurohaemal areas in the pond snail Lymnaea stagnalis (L.)Cell and tissue research, 1970