Department of Anesthesiology and Pain Medicine, Juntendo University Graduate School of Medicine, Tokyo 113-8421, Japan.
Department of Pain Control Research, The Jikei University School of Medicine, Tokyo 105-8461, Japan.
Int J Mol Sci. 2023 May 6;24(9):8369. doi: 10.3390/ijms24098369.
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.
瑞芬太尼(REM)和芬太尼(FEN)是常用的阿片类镇痛药,通过激活μ-阿片受体(MOR)发挥作用。虽然 REM 在手术期间可以轻松维持最佳浓度,但有时会切换为 FEN 以实现最佳疼痛调节。然而,这种切换方案的标准仍不清楚。阿片类麻醉剂的疗效在一定程度上取决于 MOR 脱敏;因此,在这项研究中,我们研究了 REM 和 FEN 对 MOR 的脱敏特征。在激活 MOR 方面,REM 或 FEN 第 1 次给药的疗效和效力几乎相等。同样,在决定脱敏过程的β-arrestin 募集方面,它们也没有显著差异。相比之下,FEN 的第 2 次给药导致的 MOR 脱敏效力强于 REM,而 REM 显示出比 FEN 更高的内化效力。这些结果表明,FEN 或 REM 引起的不同β-arrestin 介导的信号转导导致了它们不同的脱敏和内化过程。我们的三维分析,用 REM 和 FEN 与 MOR 模型的计算机模拟结合,突出了 REM 和 FEN 与 MOR 结合的相似但不同的部位,并导致了不同的β-arrestin 介导的特征,表明与 MOR 不同的结合特征可能改变β-arrestin 活性,这解释了 MOR 的脱敏和内化。