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Molecular mechanism for opioid dichotomy: bidirectional effect of μ-opioid receptors on P2X3 receptor currents in rat sensory neurones

机译:阿片类二分法的分子机制:μ阿片受体对大鼠感觉神经元P2X3受体电流的双向作用

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摘要

Here, we describe a molecular switch associated with opioid receptors-linked signalling cascades that provides a dual opioid control over P2X3 purinoceptor in sensory neurones. Leu-enkephalin inhibited P2X3-mediated currents with IC50 ~10 nM in ~25 % of small nociceptive rat dorsal root ganglion (DRG) neurones. In contrast, in neurones pretreated with pertussis toxin leu-enkephalin produced stable and significant increase of P2X3 currents. All effects of opioid were abolished by selective μ-opioid receptor antagonist D-Phe-Cys-Tyr-D-Trp-Orn-Thr-Pen-Thr-NH2 (CTOP), nonselective inhibitor naloxone, and by PLC inhibitor . Thus, we discovered a dual link between purinoceptors and μ-opioid receptors: the latter exert both inhibitory (pertussis toxin-sensitive) and stimulatory (pertussis toxin-insensitive) actions on P2X3 receptors through phospholipase C (PLC)-dependent pathways. This dual opioid control of P2X3 receptors may provide a molecular explanation for dichotomy of opioid therapy. Pharmacological control of this newly identified facilitation/inhibition switch may open new perspectives for the adequate medical use of opioids, the most powerful pain-killing agents known today.
机译:在这里,我们描述了一种与阿片受体连锁的信号级联反应相关的分子开关,该开关为感觉神经元中的P2X3嘌呤受体提供了双重阿片类药物控制。亮脑啡肽在〜25%的小伤害性大鼠背根神经节(DRG)神经元中以P50〜10 nM抑制P2X3介导的电流。相反,在用百日咳毒素预处理的神经元中,亮氨酸脑啡肽产生稳定且显着的P2X3电流增加。选择性μ阿片受体拮抗剂D-Phe-Cys-Tyr-D-Trp-Orn-Thr-Pen-Thr-NH2(CTOP),非选择性抑制剂纳洛酮和PLC抑制剂消除了所有阿片类药物的作用。因此,我们发现嘌呤受体与μ阿片受体之间存在双重联系:μ阿片受体通过磷脂酶C(PLC)依赖性途径对P2X3受体发挥抑制作用(对百日咳毒素敏感)和刺激(对百日咳毒素不敏感)。 P2X3受体的双重阿片样物质控制可能为阿片样物质疗法的二分法提供分子解释。对这种新近确定的促进/抑制开关的药理控制可能会为阿片类药物(目前已知的最有效的止痛药)的合理医学使用开辟新的前景。

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