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阿片促黑素原系统与小鼠海马认知功能:药理学和遗传学分析。

The nociceptin system and hippocampal cognition in mice: a pharmacological and genetic analysis.

机构信息

Department of Neuroscience, Karolinska Institutet, SE-171 77 Stockholm, Sweden.

出版信息

Brain Res. 2009 Dec 11;1305 Suppl:S7-19. doi: 10.1016/j.brainres.2009.09.075. Epub 2009 Sep 25.

DOI:10.1016/j.brainres.2009.09.075
PMID:19782658
Abstract

This study examines the effects of NOP agonists nociceptin/orphanin FQ (N/OFQ) and Ro 64-6198, NOP antagonists [Nphe(1)]N/OFQ(1-13)-NH(2) Nphe(1) and naloxone benzoylhydrazone (NalBzoH) on spatial memory in NMRI mice and pronociceptin (proNC) knockout (KO) mice using the water maze task. N/OFQ, administered i.c.v. (1, 5 and 10 nmol/mouse) and into hippocampal CA3 (1 nmol/mouse, bilaterally), impaired acquisition and retention in the maze. Impairments were blocked by pre-treatment with Nphe(1) (10 nmol, i.c.v.). Ro 64-6198 (0.1-0.3-1 mg/kg i.p.) also dose-dependently impaired learning. However, pre-treatment with NalBzoH (1 mg/kg, s.c.) failed to modify the effects of Ro 64-6198. Nphe(1) (10 nmol/mouse i.c.v.) and NalBzoH (1 mg/kg, s.c.) by themselves failed to affect maze performance, despite a tendency for enhanced performance. Prepro N/OFQ knockout (ppN/OFQ -/-) showed evidence of improved learning, evident at retention trials and in reversal training. ppN/OFQ -/- mice were not impaired by N/OFQ (10 nmol i.c.v.) in the task, suggesting that changes in postsynaptic NOP receptors may occur in such KO mice. It is concluded that N/OFQ and NOP receptors have an important role in hippocampus-dependent spatial learning and memory, probably by modulation of glutamatergic functions.

摘要

本研究使用水迷宫任务考察了 NOP 激动剂孤啡肽/孤啡肽原(N/OFQ)和 Ro 64-6198、NOP 拮抗剂 [Nphe(1)]N/OFQ(1-13)-NH(2) Nphe(1)和纳洛酮苯甲酰腙(NalBzoH)对 NMRI 小鼠和促孤啡肽原(proNC)敲除(KO)小鼠空间记忆的影响。N/OFQ,鞘内给药(1、5 和 10 nmol/只)和双侧海马 CA3 给药(1 nmol/只),损害了迷宫中的获得和保留。Nphe(1)(10 nmol,鞘内给药)预处理可阻断损害。Ro 64-6198(0.1-0.3-1 mg/kg 腹腔内给药)也呈剂量依赖性损害学习。然而,NalBzoH(1 mg/kg,皮下注射)预处理未能改变 Ro 64-6198 的作用。Nphe(1)(10 nmol/只,鞘内给药)和 NalBzoH(1 mg/kg,皮下注射)本身并未影响迷宫性能,尽管有增强表现的趋势。前孤啡肽原敲除(ppN/OFQ -/-)显示出学习能力提高的迹象,在保留试验和反转训练中都有表现。ppN/OFQ -/- 小鼠在任务中不受 N/OFQ(10 nmol,鞘内给药)的损害,这表明此类 KO 小鼠的突触后 NOP 受体可能发生变化。总之,N/OFQ 和 NOP 受体在海马依赖性空间学习和记忆中具有重要作用,可能通过调节谷氨酸能功能。

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