Antinociceptive profiles and mechanisms of centrally administered oxyntomodulin in various mouse pain models

Soo-Hyun Park1, Jae-Ryeong Lee2, Sang-Pil Jang2

  • 1Front bio Co., Ltd., #405 1-dong, 32 Soyanggang-ro, Chuncheon, Gangwon-do 24232, Republic of Korea.

Neuropeptides
|January 26, 2018
PubMed

Insights

Oxyntomodulin administered centrally shows pain relief in mice, particularly for inflammatory pain, by reducing spinal ERK activation. Its pain-relieving effects involve adrenergic receptors but not opioid or serotonin pathways.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Pain Research

Background:

  • Oxyntomodulin is a peptide hormone with diverse physiological roles.
  • Its potential antinociceptive (pain-relieving) properties require further investigation.
  • Understanding the mechanisms of novel analgesics is crucial for pain management.

Purpose of the Study:

  • To investigate the antinociceptive effects of oxyntomodulin in mouse pain models.
  • To determine the involvement of specific receptor systems in oxyntomodulin-induced analgesia.
  • To explore the molecular pathways underlying oxyntomodulin's pain-relieving action.

Main Methods:

  • Administered oxyntomodulin intrathecally (i.t.) and intracerebroventricularly (i.c.v.) in ICR mice.
  • Assessed antinociception using acetic acid-induced writhing and formalin tests.
  • Investigated receptor involvement using yohimbine, naloxone, and methysergide antagonists.
  • Measured spinal phosphorylated ERK (p-ERK) expression.

Main Results:

  • Oxyntomodulin demonstrated dose-dependent antinociceptive effects in writhing and formalin tests, primarily in the second phase of formalin pain.
  • It did not affect responses in thermal pain tests (tail-flick, hot-plate).
  • Antinociception was attenuated by yohimbine (adrenergic antagonist) but not naloxone (opioid) or methysergide (serotonin) antagonists.
  • Oxyntomodulin reduced formalin-induced p-ERK expression in the spinal cord.

Conclusions:

  • Centrally administered oxyntomodulin possesses antinociceptive properties against chemical and inflammatory pain, but not thermal pain.
  • Supraspinal oxyntomodulin-induced analgesia appears to be mediated by spinal adrenergic receptors.
  • The antinociception involves the downregulation of spinal p-ERK expression.

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