Remifentanil produces cross-desensitization and tolerance with morphine on the mu-opioid receptor

M Nowoczyn1, N Marie, L Coulbault

  • 1Université de Caen, Laboratoire de signalisation, Électrophysiologie et imagerie des lésions d'ischémie-reperfusion myocardique, UPRES EA 4650, IFR 146 ICORE, Avenue côte de Nacre, 14032 Caen, France. nowoczyn_marie@yahoo.fr

Neuropharmacology
|June 25, 2013
PubMed

Insights

Remifentanil causes rapid mu-opioid (MOP) receptor desensitization and internalization, reducing morphine

Area of Science:

  • Pharmacology
  • Neuroscience
  • Cell Biology

Background:

  • Remifentanil, a short-acting mu-opioid (MOP) receptor agonist, is used in anesthesia.
  • Per-operative remifentanil use increases post-operative morphine consumption, suggesting reduced morphine efficacy.

Purpose of the Study:

  • To elucidate the cellular mechanisms behind remifentanil's impact on morphine efficacy.
  • To investigate cellular responses to remifentanil and morphine at the MOP receptor.

Main Methods:

  • Examined remifentanil and morphine's effects on MOP receptor signaling (adenylyl cyclase, ERK1/2), phosphorylation, arrestin recruitment, and trafficking in SH-SY5Y cells.
  • Assessed the impact of remifentanil pretreatment on morphine-induced signaling and analgesia in vivo using the hot plate test in mice.

Main Results:

  • Sustained remifentanil exposure rapidly desensitized MOP receptors and reduced downstream signaling.
  • Remifentanil pretreatment diminished morphine's effects on cAMP inhibition and ERK1/2 activation.
  • Remifentanil induced faster MOP receptor internalization than morphine, without significant arrestin translocation.
  • Cross-tolerance between remifentanil and morphine was observed in vivo.

Conclusions:

  • Remifentanil induces rapid MOP receptor desensitization and internalization.
  • These cellular events reduce the anti-nociceptive efficacy of subsequent morphine administration.
  • Findings explain the observed decrease in morphine effectiveness following remifentanil exposure.

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