Mechanisms of the antiplatelet and analgesic effects of dextromethorphan and its metabolites.

Ci ji yi xue za zhi = Tzu-chi medical journal Pub Date : 2019-09-05 eCollection Date: 2020-04-01 DOI:10.4103/tcmj.tcmj_48_19
Wen-Lin Su, Yu-Ya Weng, Wen-Hsin Huang, Hao-Ai Shui, Tz-Chong Chou
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Abstract

Objective: In the present study, we investigated the effects of dextromethorphan (DM) and its metabolites, including dextrorphan (LK2), 3-methoxymorphinan (LK3), and 3-hydroxymorphinan (LK4), on platelet aggregation in vitro and the inflammatory pain caused by carrageenan in rats, and their underlying mechanisms.

Materials and methods: Rabbit platelets were pretreated with DM or its metabolites to assess their effects on platelet aggregation and related target mediators. In addition, the analgesic activity and the underlying mechanisms of DM and LK3 were investigated in a carrageenan-evoked thermal hyperalgesia rat model.

Results: The inhibitory potency of DM and its metabolites on platelet aggregation induced by arachidonic acid or collagen was LK3> DM > LK4>> LK2 as demonstrated by the half-maximal inhibitory concentration values. Moreover, the mechanisms of the antiplatelet effect of DM and LK3 may involve the inhibition of intracellular calcium mobilization, expression of platelet surface glycoprotein IIb/IIIa, the formation of thromboxane B2, and elevation of platelet membrane fluidity. DM and LK3 also exhibited analgesic effects on carrageenan-evoked thermal hyperalgesia by suppressing the production of pro-inflammatory cytokines, nitric oxide, prostaglandin E2, and neutrophil infiltration in inflammatory sites.

Conclusion: DM and its metabolites, especially LK3, exhibit both antiplatelet and analgesic effects, and may, therefore, potentially ameliorate platelet hyperactivity and inflammatory-related diseases.

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右美沙芬及其代谢物抗血小板和镇痛作用的机理。
研究目的本研究探讨了右美沙芬(DM)及其代谢物,包括右美沙芬(LK2)、3-甲氧基吗啡南(LK3)和3-羟基吗啡南(LK4)对体外血小板聚集和卡拉胶引起的大鼠炎性疼痛的影响及其内在机制:用 DM 或其代谢物预处理兔血小板,以评估它们对血小板聚集和相关靶介质的影响。此外,还在角叉菜胶诱发的热痛大鼠模型中研究了 DM 和 LK3 的镇痛活性及其内在机制:结果:DM及其代谢物对花生四烯酸或胶原蛋白诱导的血小板聚集的抑制效力为LK3>DM>LK4>>LK2,其半最大抑制浓度值为LK3>DM>LK4>>LK2。此外,DM 和 LK3 抗血小板作用的机制可能涉及抑制细胞内钙动员、血小板表面糖蛋白 IIb/IIIa 的表达、血栓素 B2 的形成和血小板膜流动性的提高。DM 和 LK3 还能抑制促炎细胞因子、一氧化氮、前列腺素 E2 的产生以及炎症部位的中性粒细胞浸润,从而对角叉菜胶诱发的热痛感有镇痛作用:结论:DM 及其代谢物,尤其是 LK3,具有抗血小板和镇痛作用,因此有可能改善血小板过度活跃和与炎症相关的疾病。
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