Effects of halothane on glutamate receptor-mediated excitatory postsynaptic currents: A patch-clamp study in adult mouse hippocampal slices

M. Perouansky*, D. Baranov, M. Salman, Y. Yaari

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

109 Scopus citations

Abstract

Background: The effects of halothane on excitatory synaptic transmission in the central nervous system of mammals have been studied in vivo and in vitro in several investigations with partially contradicting results. Direct measurements of the effects of halothane on isolated glutamate receptor- mediated (glutamatergic) excitatory postsynaptic currents (EPSCs), however, have not been reported to date. Methods: The effects of halothane on glutamatergic EPSCs were studied in vitro by using tight-seal, whole-cell recordings from CA1 pyramidal cells in thin slices from the adult mouse hippocampus. The EPSCs were pharmacologically isolated into their non-N- methyl-D-aspartate (non-NMDA) and NMDA receptor-mediated components by using selective antagonists. The effects of halothane on EPSC amplitude and kinetics were analyzed at various membrane potentials and were compared with its effects on currents evoked by exogenously applied glutamatergic agonists. Results: Halothane (0.2-5.1%; 0.37-2.78 mM) reversibly blocked non-NMDA and NMDA EPSCs. This effect was voltage independent; concentrations producing 50% inhibition were 0.87% (0.66 mM) and 0.69% (0.57 mM), respectively. Currents induced by bath-applied glutamatergic agonists were not affected even by the high concentrations of halothane. Conclusions: Halothane depresses glutamergic EPSCs irrespective of receptor subtype, most likely by inhibition of glutamate release.

Original languageEnglish
Pages (from-to)109-119
Number of pages11
JournalAnesthesiology
Volume83
Issue number1
DOIs
StatePublished - 1995

Keywords

  • Anesthetics, volatile: halothane
  • Animals: mouse
  • Brain: hippocampus
  • Central nervous system, receptors: glutamate; N-methyl-D-aspartate; non-N-methyl-D- aspartate
  • Central nervous system: excitatory postsynaptic currents
  • Measurement techniques: hippocampal slice; patch-clamp

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