The newly discovered neuropeptide nociceptin (NC) has recently been'/> Pharmacological characterization of the nociceptin receptor mediating hyperalgesia in the mouse tail withdrawal assay
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Pharmacological characterization of the nociceptin receptor mediating hyperalgesia in the mouse tail withdrawal assay

机译:小鼠尾巴撤回试验中痛觉敏受体介导痛觉过敏的药理学表征

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摘要

class="enumerated" style="list-style-type:decimal">The newly discovered neuropeptide nociceptin (NC) has recently been reported to be the endogenous ligand of the opioid-like orphan receptor. Despite its structural similarity to opioids, when injected intracerebroventricularly (i.c.v.) in the mouse, NC exerts a direct hyperalgesic effect and reverses opioid-induced analgesia. In the present investigation, these two effects of NC were evaluated under the same experimental conditions; in addition, a pharmacological characterization of the receptor mediating these central effects of NC was attempted.NC caused a dose dependent (0.1–10 nmol/mouse), naloxone-insensitive reduction of tail withdrawal latency with a maximal effect of about 50% of the reaction time observed in saline injected mice. In the same range of doses, NC inhibited morphine (1 nmol/mouse) induced analgesia.The effects of the natural peptide were mimicked by NCNH2 and NC(1–13)NH2 (all tested at 1 nmol/mouse) while 1 nmol NC(1–9)NH2 was found to be inactive either in reducing tail withdrawal latency or in preventing morphine analgesia.[Phe1ψ(CH2-NH)Gly2]NC(1–13)NH2 ([F/G]NC(1–13)NH2), which has been shown to antagonize NC effects in the mouse vas deferens, acted as an agonist, mimicking NC effects in both the experimental paradigms. In addition, when NC and [F/G]NC(1–13)NH2 were given together, their effects were additive.These results demonstrate that both the direct hyperalgesic action and the anti-morphine effect of NC can be studied under the same experimental conditions in the mouse tail withdrawal assay. Moreover, the pharmacological characterization of the NC functional site responsible for these actions compared with the peripherally active site, indicates the existence of important differences between peripheral and central NC receptors.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 最近已报道新发现的神经肽伤害感受器(NC)是阿片样孤儿受体的内源性配体。尽管它与阿片类药物在结构上相似,但当将其脑室内(i.c.v.)注射到小鼠体内时,NC会产生直接的镇痛作用并逆转阿片类药物引起的镇痛作用。在本研究中,NC的这两种作用是在相同的实验条件下评估的。此外,还试图对介导NC的这些中心作用的受体进行药理学表征。 NC引起剂量依赖性(0.1-10nmol /小鼠),纳洛酮不敏感地减少了尾巴退缩潜伏期,最大在注射生理盐水的小鼠中观察到约50%的反应时间的效果。在相同的剂量范围内,NC抑制吗啡(1 nmol /小鼠)的镇痛作用。 NCNH2和NC(1-13)NH2模仿了天然肽的作用(均在1 nmol下测试) /小鼠),而发现1 nmol NC(1-9)NH2在减少尾巴退缩潜伏期或预防吗啡镇痛方面无效。 [Phe 1 ψ(CH2 -NH)Gly 2 ] NC(1-13)NH2([F / G] NC(1-13)NH2),已被证明可拮抗小鼠输精管中的NC效应。作为激动剂,在两个实验范式中都模仿NC效应。此外,当同时使用NC和[F / G] NC(1-13)NH2时,它们的作用是加和的。 这些结果表明,NC的直接镇痛作用和吗啡的抗作用可以在小鼠尾巴退缩试验中在相同的实验条件下研究NC。此外,负责这些作用的NC功能位点与周围活性位点的药理学特征表明,外周和中枢NC受体之间存在重要差异。

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