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Distinct Profiles of Desensitization of µ-Opioid Receptors Caused by Remifentanil or Fentanyl: In Vitro Assay with
Eiko Uezono1,2, Yusuke Mizobuchi2,3, Kanako Miyano2,4,5
1Department of Anesthesiology and Pain Medicine, Juntendo University Graduate School of Medicine, Tokyo 113-8421, Japan.
Abstract:
Remifentanil (REM) and fentanyl (FEN) are commonly used analgesics that act by activating a µ-opioid receptor (MOR). Although optimal concentrations of REM can be easily maintained during surgery, it is sometimes switched to FEN for optimal pain regulation. However, standards for this switching protocol remain unclear. Opioid anesthetic efficacy is decided in part by MOR desensitization; thus, in this study, we investigated the desensitization profiles of REM and FEN to MOR. The efficacy and potency during the 1st administration of REM or FEN in activating the MOR were almost equal. Similarly, in β arrestin recruitment, which determines desensitization processes, they showed no significant differences. In contrast, the 2nd administration of FEN resulted in a stronger MOR desensitization potency than that of REM, whereas REM showed a higher internalization potency than FEN. These results suggest that different β arrestin-mediated signaling caused by FEN or REM led to their distinct desensitization and internalization processes. Our three-dimensional analysis, with in silico binding of REM and FEN to MOR models, highlighted that REM and FEN bound to similar but distinct sites of MOR and led to distinct β arrestin-mediated profiles, suggesting that distinct binding profiles to MOR may alter β arrestin activity, which accounts for MOR desensitization and internalization.
Insights
Remifentanil (REM) and fentanyl (FEN) activate the µ-opioid receptor (MOR) similarly. However, FEN causes stronger MOR desensitization, while REM shows higher internalization, impacting pain regulation strategies.
Area of Science:
- Pharmacology
- Molecular Biology
- Anesthesiology
Background:
- Remifentanil (REM) and fentanyl (FEN) are key µ-opioid receptor (MOR) agonists used for analgesia.
- Optimal switching protocols between REM and FEN for pain management remain undefined.
- MOR desensitization influences opioid anesthetic efficacy.
Purpose of the Study:
- To investigate and compare the desensitization profiles of REM and FEN on MOR.
- To elucidate the distinct signaling pathways involved in MOR desensitization and internalization by REM and FEN.
Main Methods:
- In vitro assays measuring MOR activation, β-arrestin recruitment, and receptor internalization.
- Three-dimensional structural analysis and in silico binding simulations of REM and FEN to MOR.
Main Results:
- Initial administration of REM and FEN showed comparable MOR activation and β-arrestin recruitment.
- Subsequent FEN administration induced greater MOR desensitization potency compared to REM.
- REM exhibited higher MOR internalization potency than FEN.
- Distinct β-arrestin-mediated signaling pathways were observed for REM and FEN.
Conclusions:
- REM and FEN bind to similar yet distinct sites on the MOR.
- Differential binding profiles lead to unique β-arrestin-mediated signaling, accounting for varied MOR desensitization and internalization.
- Findings provide insights into optimizing opioid analgesic strategies and switching protocols.
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