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Morphine-induced hyperalgesia involves mu opioid receptors and the metabolite morphine-3-glucuronide

机译:吗啡引起的痛觉过敏涉及μ阿片受体和代谢物吗啡-3-葡萄糖醛酸

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摘要

Opiates are potent analgesics but their clinical use is limited by side effects including analgesic tolerance and opioid-induced hyperalgesia (OIH). The Opiates produce analgesia and other adverse effects through activation of the mu opioid receptor (MOR) encoded by the Oprm1 gene. However, MOR and morphine metabolism involvement in OIH have been little explored. Hence, we examined MOR contribution to OIH by comparing morphine-induced hyperalgesia in wild type (WT) and MOR knockout (KO) mice. We found that repeated morphine administration led to analgesic tolerance and hyperalgesia in WT mice but not in MOR KO mice. The absence of OIH in MOR KO mice was found in both sexes, in two KO global mutant lines, and for mechanical, heat and cold pain modalities. In addition, the morphine metabolite morphine-3beta-D-glucuronide (M3G) elicited hyperalgesia in WT but not in MOR KO animals, as well as in both MOR flox and MOR-Nav1.8 sensory neuron conditional KO mice. M3G displayed significant binding to MOR and G-protein activation when using membranes from MOR-transfected cells or WT mice but not from MOR KO mice. Collectively our results show that MOR is involved in hyperalgesia induced by chronic morphine and its metabolite M3G.
机译:阿片类药物是有效的镇痛药,但其临床应用受到包括镇痛耐受性和阿片类药物诱导的痛觉过敏(OIH)等副作用的限制。阿片类药物通过激活由Oprm1基因编码的阿片类阿片受体(MOR)产生镇痛和其他不良作用。然而,关于OIH的MOR和吗啡代谢参与的研究很少。因此,我们通过比较野生型(WT)和MOR敲除(KO)小鼠中吗啡诱导的痛觉过敏来研究MOR对OIH的贡献。我们发现在吗啡小鼠中重复使用吗啡会导致镇痛耐受性和痛觉过敏,而在MOR KO小鼠中却不会。在MOR KO小鼠中,在两个性别,两个KO全局突变体系以及机械,热和冷痛模式中均未发现OIH。此外,吗啡代谢物吗啡3β-D-葡萄糖醛酸(M3G)在WT中引起痛觉过敏,但在MOR KO动物以及MOR flox和MOR-Nav1.8感觉神经元条件性KO小鼠中均不引起痛觉过敏。当使用MOR转染的细胞或WT小鼠的膜而不是MOR KO小鼠的膜时,M3G显示出与MOR和G蛋白激活的显着结合。我们的研究结果表明,MOR参与慢性吗啡及其代谢产物M3G引起的痛觉过敏。

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