Delta-opioid receptors protect from anoxic disruption of Na+ homeostasis via Na+ channel regulation

BALBONI, GIANFRANCO;
2009-01-01

Abstract

Hypoxic/ischemic disruption of ionic homeostasis is a critical trigger of neuronal injury/death in the brain. There is, however, no promising strategy against such pathophysiologic change to protect the brain from hypoxic/ischemic injury. Here, we present a novel finding that activation of delta-opioid receptors (DOR) reduced anoxic Na+ influx in the mouse cortex, which was completely blocked by DOR antagonism with naltrindole. Furthermore, we co-expressed DOR and Na+ channels in Xenopus oocytes and showed that DOR expression and activation indeed play an inhibitory role in Na+ channel regulation by decreasing the amplitude of sodium currents and increasing activation threshold of Na+ channels. Our results suggest that DOR protects from anoxic disruption of Na+ homeostasis via Na+ channel regulation. These data may potentially have significant impacts on understanding the intrinsic mechanism of neuronal responses to stress and provide clues for better solutions of hypoxic/ischemic encephalopathy, and for the exploration of acupuncture mechanism since acupuncture activates opioid system.
2009
Inglese
66
3505
3516
12
Esperti anonimi
delta-Opioid receptor; Na+ channels; Na+ influx; Hypoxia; Cortex
I synthesized the delta opioid agonist UFP-512.
Kang, X; Chao, D; Gu, Q; Ding, G; Wang, Y; Balboni, Gianfranco; LAZARUS L., H; Xia, Y.
1.1 Articolo in rivista
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
8
none
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