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Updated: May 10, 2026

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
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
Abstract:
Remifentanil is a powerful mu-opioid (MOP) receptor agonist used in anaesthesia with a very short half-life. However, per-operative perfusion of remifentanil was shown to increase morphine consumption during post-operative period to relieve pain. In the present study, we aimed to describe the cellular mechanisms responsible for this apparent reduction of morphine efficacy. For this purpose, we first examined the pharmacological properties of both remifentanil and morphine at the MOP receptor, endogenously expressed in the human neuroblastoma SH-SY5Y cell line, to regulate adenylyl cyclase and the MAP kinase ERK1/2 pathway, their potency to promote MOP receptor phosphorylation, arrestin 3-CFP (cyan fluorescent protein) recruitment and receptor trafficking during acute and sustained exposure. In the second part of this work, we studied the effects of a prior exposure of remifentanil on morphine-induced inhibition of cAMP accumulation, activation of ERK1/2 and analgesia. We showed that sustained exposure to remifentanil promoted a rapid desensitization of opioid receptors on both signalling pathways and a pretreatment with this agonist reduced signal transduction produced by a second challenge with morphine. While both opioid agonists promoted Ser(375) phosphorylation on MOP receptor, remifentanil induced a rapid internalization of opioid receptors compared to morphine but without detectable arrestin 3-CFP translocation to the plasma membrane in our experimental conditions. Lastly, a cross-tolerance between remifentanil and morphine was observed in mice using the hot plate test. Our in vitro and in vivo data thus demonstrated that remifentanil produced a rapid desensitization and internalization of the MOP receptor that would reduce the anti-nociceptive effects of morphine.
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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