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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Hesperidin induces antinociceptive effect in mice and its aglicone, hesperetin, binds to mu-opioid receptor and inhibits GIRK1/2 currents.
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Hesperidin induces antinociceptive effect in mice and its aglicone, hesperetin, binds to mu-opioid receptor and inhibits GIRK1/2 currents.

机译:橙皮苷在小鼠中具有抗伤害感受作用,其胶体蛋白橙皮苷与μ阿片受体结合并抑制GIRK1 / 2电流。

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This paper extended the evaluation of the depressant and antinociceptive activities of hesperidin in order to determine its effectiveness by the intraperitoneal and oral routes, its pharmacological interaction with diverse pathways of neurotransmission and the role of its aglycone, hesperetin. The capacity of hesperidin and hesperetin to bind to mu-opioid receptor and their actions on mu-opioid receptor co-expressed with GIRK1/GIRK2 channels (G protein-activated inwardly rectifying K+ channels) in Xenopus laevis oocytes were also determined. Hesperidin exhibited a depressant activity in the hole board and locomotor activity tests, antinociceptive activities in the abdominal writhing and hot plate tests and no motor incoordination in the inverted screen and rotarod assays, only by the intraperitoneal route. Hesperetin did not show any effects in vivo in mice in these models, but in vitro it displaced the [(3)H]DAMGO binding with low-affinity and inhibited inward currents through the expressed GIRK1/2 channels. Although hesperidin actions in vivo demonstrated to be mediated by an opioid mechanism of action, it failed to directly bind to and activate the mu-opioid receptor or produce any change on inward GIRK1/2 currents in vitro. However, it should be considered that hesperidin may be metabolized, possibly resulting in crucial changes in its biological activity.
机译:本文扩展了橙皮苷的抑制和抗伤害感受活性的评估,以通过腹膜内和口服途径确定其有效性,其与多种神经传递途径的药理相互作用以及糖苷配基,橙皮苷的作用。还测定了非洲爪蟾卵母细胞中橙皮苷和橙皮素与μ阿片受体结合的能力以及它们对与GIRK1 / GIRK2通道(G蛋白激活的内向整流K +通道)共表达的μ阿片受体的作用。橙皮苷在孔板和运动能力测试中显示出抑制活性,在腹部扭体和热板测试中显示出镇痛活性,而在倒置筛检和旋转法检测中仅通过腹膜内途径没有运动失调。橙皮素在这些模型的小鼠体内没有显示任何作用,但是在体外它以低亲和力置换了[(3)H] DAMGO结合并抑制了通过表达的GIRK1 / 2通道的内向电流。尽管橙皮苷在体内的作用被证明是由阿片类药物的作用机制介导的,但它未能直接结合并激活μ阿片类药物的受体,或无法在体外对GIRK1 / 2电流产生任何变化。但是,应考虑橙皮苷可能会被代谢,可能导致其生物学活性发生重大变化。

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