Inflammation-induced changes in rostral ventromedial medulla mu and kappa opioid receptor mediated antinociception

Raf Jan-Filip Schepers1, Janet Lynn Mahoney, Toni Shaun Shippenberg

  • 1University of Maryland School of Medicine, 660 W. Redwood Street, Baltimore, MD 21201, USA Integrative Neuroscience Section, Behavioral Neurosciences Branch, National Institutes of Health/National Institute on Drug Abuse Intramural Research Program, 333 Cassell Drive, Baltimore, MD 21224, USA.

Pain
|September 4, 2007
PubMed

Insights

Opioid agonists in the rostral ventromedial medulla (RVM) reduce pain from inflammation. This pain relief effect is enhanced during prolonged inflammation, suggesting central nervous system changes that boost opioid receptor (MOPr, KOPr) antinociception.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Pain Research

Background:

  • Opioid agonists acting on mu-, delta-, or kappa-opioid receptors (MOPr, DOPr, KOPr) in the rostral ventromedial medulla (RVM) produce antinociception.
  • While MOPr and DOPr agonists show potentiated antinociception during inflammation, this effect is not well-characterized for KOPr agonists or other stimulus modalities.

Purpose of the Study:

  • To investigate if kappa-opioid receptor (KOPr) agonist antinociception is potentiated during inflammation.
  • To determine if inflammation alters the antinociceptive effects of MOPr and KOPr agonists on thermal and mechanical pain.

Main Methods:

  • Rats received complete Freund's adjuvant (CFA) to induce inflammation.
  • Antinociception from RVM infusion of KOPr agonist U69593 and MOPr agonist DAMGO was assessed using thermal paw withdrawal latency (Hargreaves method) and mechanical thresholds (Von Frey and Randall-Selitto methods).
  • Effects were tested at various time points (4 hours to 2 weeks) post-CFA injection.

Main Results:

  • CFA injection reduced paw withdrawal latencies and mechanical thresholds, indicating thermal and mechanical allodynia.
  • RVM infusion of U69593 and DAMGO attenuated CFA-induced allodynia for both thermal and mechanical stimuli.
  • Antinociceptive effects were enhanced at 2 weeks post-CFA compared to 4 hours, particularly on the non-inflamed paw, suggesting centrally mediated neuroplastic changes.

Conclusions:

  • RVM administration of MOPr and KOPr agonists effectively attenuates inflammation-evoked thermal and tactile allodynia.
  • The antinociceptive efficacy of these agonists increases with prolonged inflammation, indicating adaptive changes in pain modulation pathways.
  • Inflammation induces central neuroplasticity that enhances MOPr- and KOPr-mediated antinociception.

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