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孤啡肽作为一种作用于脊髓以上水平而非脊髓水平的抗阿片肽。

Orphanin FQ acts as a supraspinal, but not a spinal, anti-opioid peptide.

作者信息

Grisel J E, Mogil J S, Belknap J K, Grandy D K

机构信息

Research Service (151W), VA Medical Center, Portland, OR, USA.

出版信息

Neuroreport. 1996 Sep 2;7(13):2125-9. doi: 10.1097/00001756-199609020-00012.

Abstract

Orphanin FQ (OFQ), the endogenous ligand for the orphan opioid receptor, LC132, was recently isolated and characterized. The anti-opioid role of OFQ in supraspinal pain modulation was demonstrated by our previous observations that intracerebroventricular (i.c.v.) OFQ administration dose-dependently reverses systemic morphine antinociception and opioid-mediated stress-induced antinociception. The present study was designed to evaluate whether OFQ also modulates the antinociceptive actions of morphine in the spinal cord. Immediately after assessment of baseline nociceptive sensitivity on the 49 degrees C tail-withdrawal assay, mice of both sexes were given i.c.v. or intrathecal (i.t.) cocktails of morphine (0, 1, 10 or 50 micrograms [0-135 nmol]) and OFQ (0 or 10 nmol), and re-tested 15, 30 and 60 min later. OFQ alone did not affect nociceptive sensitivity when administered by either route. Following i.c.v. administration, the antinociception produced by 10 micrograms morphine was completely reversed by 10 nmol OFQ; antinociception induced by 50 micrograms morphine was significantly antagonized. In contrast, OFQ was completely ineffective against antinociception induced by i.t. morphine. These findings indicate that the anti-opioid actions of OFQ are restricted to supraspinal central nervous system sites.

摘要

孤啡肽(OFQ)是孤儿阿片受体LC132的内源性配体,最近已被分离并鉴定。我们之前的观察结果表明,脑室内(i.c.v.)注射OFQ可剂量依赖性地逆转全身吗啡镇痛作用和阿片类药物介导的应激诱导镇痛作用,从而证明了OFQ在脊髓上疼痛调节中的抗阿片作用。本研究旨在评估OFQ是否也能调节吗啡在脊髓中的镇痛作用。在通过49摄氏度甩尾试验评估基线伤害性感受敏感性后,立即给雌雄小鼠脑室内或鞘内注射吗啡(0、1、10或50微克[0 - 135纳摩尔])和OFQ(0或10纳摩尔)的混合液,并在15、30和60分钟后重新测试。单独注射OFQ时,无论通过哪种途径给药,均不影响伤害性感受敏感性。脑室内注射后,10纳摩尔OFQ可完全逆转10微克吗啡产生的镇痛作用;50微克吗啡诱导的镇痛作用受到显著拮抗。相比之下,OFQ对鞘内注射吗啡诱导的镇痛作用完全无效。这些发现表明,OFQ的抗阿片作用仅限于脊髓上的中枢神经系统部位。

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