Reduced Accumbal Dopamine Efflux Via Orexin OX2 Receptors in Chronic Pain Models

Hiroki Kawashima1, John L Waddington2, Tadashi Saigusa1

  • 1Department of Pharmacology, Nihon University School of Dentistry at Matsudo, Chiba, Japan.

Insights

Chronic pain may decrease orexinergic neural activity, impacting dopamine release in the brain. This study reveals that both inflammatory and neuropathic pain reduce orexin receptor stimulation, potentially contributing to pain-related dopamine dysfunction.

Area of Science:

  • Neuroscience
  • Pain Research
  • Neuropharmacology

Background:

  • Chronic pain conditions are associated with altered neural activity.
  • Orexin receptors, particularly OX2 receptors in the nucleus accumbens, modulate dopamine efflux.
  • Orexin receptor stimulation has been proposed as a strategy for chronic pain suppression.

Purpose of the Study:

  • To investigate the impact of chronic pain on orexin receptor-mediated regulation of dopamine activity in the nucleus accumbens.
  • To analyze how inflammatory and neuropathic pain models affect dopamine efflux in response to orexin receptor ligands.

Main Methods:

  • Induction of inflammatory pain (carrageenan) and neuropathic pain (sciatic nerve ligation) in rats.
  • In vivo microdialysis to measure accumbal dopamine efflux.
  • Administration of orexin receptor antagonists (MK-4305, EMPA) and an agonist (orexin-B).

Main Results:

  • Neither pain model altered basal dopamine efflux.
  • The ability of OX1 and OX2 receptor antagonists to increase dopamine efflux was reduced in both pain models.
  • The OX2 receptor agonist orexin-B's effect was counteracted in pain models, suggesting reduced endogenous orexin signaling.

Conclusions:

  • Both inflammatory and neuropathic pain lead to diminished stimulation of accumbal OX2 receptors by endogenous orexins.
  • This reduced orexinergic signaling may contribute to the pathophysiology of chronic pain and associated neurochemical changes.

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