Neurosteroid dehydroepiandrosterone sulphate inhibits persistent sodium currents in rat medial prefrontal cortex via activation of sigma-1 receptors

Zheng Xiang Cheng, Dan Mei Lan, Pei Ying Wu, Yan Hua Zhu, Yi Dong, Lan Ma, Ping Zheng*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

62 Scopus citations

Abstract

Dehydroepiandrosterone sulphate is one of the most important neurosteroids. In the present paper, we studied the effect of dehydroepiandrosterone sulphate on persistent sodium currents and its mechanism and functional consequence with whole-cell patch clamp recording method combined with a pharmacological approach in the rat medial prefrontal cortex slices. The results showed that dehydroepiandrosterone sulphate inhibited the amplitude of persistent sodium currents and the inhibitory effect was significant at 0.1 μM, reached maximum at 1 μM and decreased with the increase in the concentrations of above 1 μM. The effect of dehydroepiandrosterone sulphate on persistent sodium currents was canceled by the Gi protein inhibitor and the protein kinase C inhibitor, but not by the protein kinase A inhibitor. The effect of dehydroepiandrosterone sulphate on persistent sodium currents was also canceled by the sigma-1 receptor blockers and the sigma-1 receptor agonist could mimic the effect of dehydroepiandrosterone sulphate. Dehydroepiandrosterone sulphate had no significant influence on neuronal excitability but could significantly inhibit chemical inhibition of mitochondria-evoked increase in persistent sodium currents. These results suggest that dehydroepiandrosterone sulphate inhibits persistent sodium currents via the activation of sigma-1 receptors-Gi protein-protein kinase C-coupled signaling pathway, and the main functional consequence of this effect of DHEAS is presumably to protect neurons under ischemia.

Original languageEnglish
Pages (from-to)128-136
Number of pages9
JournalExperimental Neurology
Volume210
Issue number1
DOIs
StatePublished - Mar 2008
Externally publishedYes

Keywords

  • Chemical inhibition of mitochondria
  • Dehydroepiandrosterone sulphate
  • Excitability
  • Gi protein
  • Medial prefrontal cortex
  • Neurosteroid
  • Persistent sodium currents
  • Protein kinase C
  • Sigma-1 receptors
  • Whole-cell patch clamp

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