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孤啡肽/痛敏肽和痛抑素对东莨菪碱诱导的小鼠学习记忆损伤的影响

Nociceptin/orphanin FQ and nocistatin on learning and memory impairment induced by scopolamine in mice.

作者信息

Hiramatsu M, Inoue K

机构信息

Department of Chemical Pharmacology, Faculty of Pharmaceutical Sciences, Meijo University, Nagoya, Japan.

出版信息

Br J Pharmacol. 1999 Jun;127(3):655-60. doi: 10.1038/sj.bjp.0702595.

Abstract
  1. Nociceptin, also known as orphanin FQ, is an endogenous ligand for the orphan opioid receptor-like receptor 1 (ORL1) and involves in various functions in the central nervous system (CNS). On the other hand, nocistatin is recently isolated from the same precursor as nociceptin and blocks nociceptin-induced allodynia and hyperalgesia. 2. Although ORL1 receptors which display a high degree of sequence homology with classical opioid receptors are abundant in the hippocampus, little is known regarding their role in learning and memory. 3. The present study was designed to investigate whether nociceptin/orphanin FQ and nocistatin could modulate impairment of learning and memory induced by scopolamine, a muscarinic cholinergic receptor antagonist, using spontaneous alternation of Y-maze and step-down type passive avoidance tasks in mice. 4. While nocistatin (0.5-5.0 nmol mouse-1, i.c.v.) administered 30 min before spontaneous alternation performance or the training session of the passive avoidance task, had no effect on spontaneous alternation or passive avoidance behaviours, a lower per cent alternation and shorter median step-down latency in the retention test were obtained in nociceptin (1.5 and/or 5.0 nmol mouse-1, i.c.v.)-treated normal mice. 5. Administration of nocistatin (1.5 and/or 5.0 nmol mouse-1, i.c.v.) 30 min before spontaneous alternation performance or the training session of the passive avoidance task, attenuated the scopolamine-induced impairment of spontaneous alternation and passive avoidance behaviours. 6. These results indicated that nocistatin, a new biologically active peptide, ameliorates impairments of spontaneous alternation and passive avoidance induced by scopolamine, and suggested that these peptides play opposite roles in learning and memory.
摘要
  1. 痛敏肽,也被称为孤啡肽FQ,是孤儿阿片样受体1(ORL1)的内源性配体,参与中枢神经系统(CNS)的多种功能。另一方面,痛敏抑制素最近从与痛敏肽相同的前体中分离出来,并能阻断痛敏肽诱导的痛觉过敏和异常性疼痛。2. 尽管与经典阿片受体具有高度序列同源性的ORL1受体在海马中大量存在,但关于它们在学习和记忆中的作用却知之甚少。3. 本研究旨在利用小鼠Y迷宫自发交替和跳台型被动回避任务,研究痛敏肽/孤啡肽FQ和痛敏抑制素是否能调节东莨菪碱(一种毒蕈碱胆碱能受体拮抗剂)诱导的学习和记忆损伤。4. 在自发交替试验或被动回避任务训练前30分钟给予痛敏抑制素(0.5 - 5.0 nmol/小鼠,脑室内注射),对自发交替或被动回避行为没有影响,但在痛敏肽(1.5和/或5.0 nmol/小鼠,脑室内注射)处理的正常小鼠中,在保留试验中获得了较低的交替百分比和较短的跳台潜伏期中位数。5. 在自发交替试验或被动回避任务训练前30分钟给予痛敏抑制素(1.5和/或5.0 nmol/小鼠,脑室内注射),可减轻东莨菪碱诱导的自发交替和被动回避行为损伤。6. 这些结果表明,痛敏抑制素,一种新的生物活性肽,可以改善东莨菪碱诱导的自发交替和被动回避损伤,并表明这些肽在学习和记忆中发挥相反的作用。

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Nociceptin/orphanin FQ and the opioid receptor-like ORL1 receptor.孤啡肽/痛敏肽与阿片受体样ORL1受体
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