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Updated: Jun 3, 2026

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
Recovery from mu-opioid receptor desensitization after chronic treatment with morphine and methadone
Nidia Quillinan1, Elaine K Lau, Michael Virk
1Vollum Institute, Oregon Health and Science University, Portland, Oregon 97239, USA.
Abstract:
Chronic treatment with morphine results in a decrease in micro-opioid receptor sensitivity, an increase in acute desensitization, and a reduction in the recovery from acute desensitization in locus ceruleus neurons. With acute administration, morphine is unlike many other opioid agonists in that it does not mediate robust acute desensitization or induce receptor trafficking. This study compares micro-opioid receptor desensitization and trafficking in brain slices taken from rats treated for 6-7 d with a range of doses of morphine (60, 30, and 15 mg · kg(-1) · d(-1)) and methadone (60, 30, and 5 mg · kg(-1) · d(-1)) applied by subcutaneous implantation of osmotic minipumps. Mice were treated with 45 mg · kg(-1) · d(-1). In morphine-treated animals, recovery from acute [Met](5)enkephalin-induced desensitization and receptor recycling was diminished. In contrast, recovery and recycling were unchanged in slices from methadone-treated animals. Remarkably the reduced recovery from desensitization and receptor recycling found in slices from morphine-treated animals were not observed in animals lacking β-arrestin-2. Furthermore, pharmacological inhibition of G-protein receptor kinase 2 (GRK2), although not affecting the ability of [Met](5)enkephalin to induce desensitization, acutely reversed the delay in recovery from desensitization produced by chronic morphine treatment. These results characterize a previously unidentified function of the GRK/arrestin system in mediating opioid regulation in response to chronic morphine administration. They also suggest that the GRK/arrestin system, rather than serving as a primary mediator of acute desensitization, controls recovery from desensitization by regulating receptor reinsertion to the plasma membrane after chronic treatment with morphine. The sustained GRK/arrestin-dependent desensitization is another way in which morphine and methadone are distinguished.
Insights
Chronic morphine use impairs micro-opioid receptor recovery, unlike methadone. The GRK/arrestin system, not acute desensitization, controls this recovery after long-term morphine administration.
Area of Science:
- Neuropharmacology
- Molecular Biology
- Opioid Research
Background:
- Chronic morphine treatment alters micro-opioid receptor (MOR) function, decreasing sensitivity and impairing recovery from desensitization.
- Unlike acute administration, chronic morphine does not induce robust acute desensitization or receptor trafficking.
Purpose of the Study:
- To compare MOR desensitization and trafficking following chronic morphine and methadone administration.
- To investigate the role of the GRK/arrestin system in mediating the effects of chronic morphine on MOR recovery.
Main Methods:
- Brain slices from rats and mice treated with chronic morphine or methadone via osmotic minipumps were used.
- Desensitization and recovery from desensitization induced by [Met](5)enkephalin were measured.
- Experiments were conducted in wild-type and beta-arrestin-2 knockout animals, and with GRK2 inhibition.
Main Results:
- Chronic morphine treatment diminished recovery from desensitization and receptor recycling, while methadone did not.
- Reduced recovery in morphine-treated animals was absent in beta-arrestin-2 knockout mice.
- Inhibition of G-protein receptor kinase 2 (GRK2) acutely reversed the delayed recovery caused by chronic morphine.
Conclusions:
- The GRK/arrestin system plays a critical role in regulating MOR recovery after chronic morphine, not acute desensitization.
- This system controls receptor reinsertion to the plasma membrane following chronic morphine exposure.
- Sustained GRK/arrestin-dependent desensitization distinguishes morphine from methadone's long-term effects.
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