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在大鼠中脑导水管周围灰质切片中,通过 (+)-5a 化合物和 Ro 64-6198 揭示了孤啡肽受体的功能异质性。

Functional heterogeneity of nociceptin/orphanin FQ receptors revealed by (+)-5a Compound and Ro 64-6198 in rat periaqueductal grey slices.

机构信息

Graduate Institute of Pharmacology, College of Medicine, National Taiwan University, Taipei, Taiwan.

出版信息

Int J Neuropsychopharmacol. 2011 Aug;14(7):977-89. doi: 10.1017/S146114571000129X. Epub 2010 Oct 29.

Abstract

The nociceptin/orphanin FQ (N/OFQ) peptide (NOP) receptor is a non-opioid branch of the opioid receptor family implicated in several neurological and psychological disorders, such as pain, anxiety, depression, involuntary movement, addiction, seizure and dementia. Heterogeneity of NOP receptors has been proposed based on the findings of splicing variants and from binding and functional studies. We have previously reported that Ro 64-6198, a NOP receptor agonist, activated a subset, but not all, of N/OFQ-sensitive NOP receptors in midbrain ventrolateral periaqueductal grey (vlPAG). In this study, we found that a new NOP receptor ligand, (+)-5a Compound ((3aS, 6aR)-1-(cis-4-isopropylcyclohexyl)-5'-methyl-2'-phenylhexahydrospiro[piperidine-4,1'-pyrrolo[3, 4-c]pyrrole]), also activated a subset of NOP receptors in vlPAG neurons. (+)-5a Compound (0.1-30 μm) concentration-dependently activated G-protein-coupled inwardly-rectifying potassium (GIRK) channels mediated through the NOP receptors in about 35% of the recorded vlPAG neurons. (+)-5a Compound (EC50: 605 nm) was less potent (1/12) and efficacious (47%) than N/OFQ. In (+)-5a Compound-insensitive neurons, Ro 64-6198 was also ineffective, and vice versa, but N/OFQ activated GIRK channels through NOP receptors. In (+)-5a Compound-sensitive neurons, (+)-5a Compound precluded the effect of Ro 64-6198. Immunofluorecent and morphometric studies showed that most of the (+)-5a Compound-sensitive neurons were multipolar with intensive dendritic arborization and immunoreactive to glutamic acid decarboxylase-67. It is suggested that (+)-5a Compound activates a subset of NOP receptors, similar to the Ro 64-6198-sensitive subset, in the vlPAG neurons which are mostly GABAergic. These results further support the presence of functional heterogeneity of NOP receptors in the midbrain PAG.

摘要

孤啡肽/N-末端前啡肽(N/OFQ)肽(NOP)受体是阿片受体家族的非阿片分支,涉及多种神经和心理疾病,如疼痛、焦虑、抑郁、不自主运动、成瘾、癫痫和痴呆。基于剪接变体的发现以及结合和功能研究,已经提出了 NOP 受体的异质性。我们之前报道过,NOP 受体激动剂 Ro 64-6198 激活了中脑腹外侧导水管周围灰质(vlPAG)中 N/OFQ 敏感 NOP 受体的一部分,但不是全部。在这项研究中,我们发现一种新的 NOP 受体配体,(+)-5a 化合物[(3aS,6aR)-1-(顺-4-异丙基环己基)-5'-甲基-2'-苯基六氢螺[哌啶-4,1'-吡咯并[3,4-c]吡咯]],也激活了 vlPAG 神经元中 NOP 受体的一部分。(+)-5a 化合物(0.1-30μm)浓度依赖性地激活 G 蛋白偶联内向整流钾(GIRK)通道,通过大约 35%记录的 vlPAG 神经元中的 NOP 受体介导。(+)-5a 化合物(EC50:605nm)的效力(1/12)比 N/OFQ 低(47%)。在(+)-5a 化合物不敏感的神经元中,Ro 64-6198 也无效,反之亦然,但 N/OFQ 通过 NOP 受体激活 GIRK 通道。在(+)-5a 化合物敏感的神经元中,(+)-5a 化合物排除了 Ro 64-6198 的作用。免疫荧光和形态计量学研究表明,大多数(+)-5a 化合物敏感的神经元是多极的,具有密集的树突分支,并对谷氨酸脱羧酶-67 呈免疫反应性。这表明,(+)-5a 化合物在 vlPAG 神经元中激活了 NOP 受体的一部分,类似于 Ro 64-6198 敏感的部分,这些神经元主要是 GABA 能的。这些结果进一步支持了中脑 PAG 中 NOP 受体存在功能异质性。

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