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N/OFQ-NOP受体系统的功能可塑性决定了NOP受体激动剂的镇痛特性。

Functional plasticity of the N/OFQ-NOP receptor system determines analgesic properties of NOP receptor agonists.

作者信息

Schröder W, Lambert D G, Ko M C, Koch T

机构信息

Department of Translational Science, Global Innovation, Grünenthal GmbH, Aachen, Germany.

出版信息

Br J Pharmacol. 2014 Aug;171(16):3777-800. doi: 10.1111/bph.12744.

Abstract

Despite high sequence similarity between NOP (nociceptin/orphanin FQ opioid peptide) and opioid receptors, marked differences in endogenous ligand selectivity, signal transduction, phosphorylation, desensitization, internalization and trafficking have been identified; underscoring the evolutionary difference between NOP and opioid receptors. Activation of NOP receptors affects nociceptive transmission in a site-specific manner, with antinociceptive effects prevailing after peripheral and spinal activation, and pronociceptive effects after supraspinal activation in rodents. The net effect of systemically administered NOP receptor agonists on nociception is proposed to depend on the relative contribution of peripheral, spinal and supraspinal activation, and this may depend on experimental conditions. Functional expression and regulation of NOP receptors at peripheral and central sites of the nociceptive pathway exhibits a high degree of plasticity under conditions of neuropathic and inflammatory pain. In rodents, systemically administered NOP receptor agonists exerted antihypersensitive effects in models of neuropathic and inflammatory pain. However, they were largely ineffective in acute pain while concomitantly evoking severe motor side effects. In contrast, systemic administration of NOP receptor agonists to non-human primates (NHPs) exerted potent and efficacious antinociception in the absence of motor and sedative side effects. The reason for this species difference with respect to antinociceptive efficacy and tolerability is not clear. Moreover, co-activation of NOP and μ-opioid peptide (MOP) receptors synergistically produced antinociception in NHPs. Hence, both selective NOP receptor as well as NOP/MOP receptor agonists may hold potential for clinical use as analgesics effective in conditions of acute and chronic pain.

摘要

尽管痛敏肽/孤啡肽FQ阿片肽(NOP)与阿片受体之间具有高度的序列相似性,但已确定它们在内源性配体选择性、信号转导、磷酸化、脱敏、内化和转运方面存在显著差异;这突出了NOP与阿片受体之间的进化差异。NOP受体的激活以位点特异性方式影响伤害性感受传递,在外周和脊髓激活后主要产生抗伤害感受作用,而在啮齿动物中脑激活后则产生促伤害感受作用。全身给药的NOP受体激动剂对伤害感受的净效应被认为取决于外周、脊髓和脑激活的相对贡献,这可能取决于实验条件。在神经性疼痛和炎性疼痛条件下,伤害感受通路外周和中枢部位的NOP受体的功能表达和调节表现出高度可塑性。在啮齿动物中,全身给药的NOP受体激动剂在神经性疼痛和炎性疼痛模型中发挥抗超敏作用。然而,它们在急性疼痛中大多无效,同时会引发严重的运动副作用。相比之下,向非人类灵长类动物(NHP)全身给药NOP受体激动剂在没有运动和镇静副作用的情况下发挥了强大而有效的抗伤害感受作用。这种在抗伤害感受功效和耐受性方面的物种差异的原因尚不清楚。此外,NOP和μ-阿片肽(MOP)受体的共同激活在NHP中协同产生抗伤害感受作用。因此,选择性NOP受体激动剂以及NOP/MOP受体激动剂都可能具有作为有效治疗急慢性疼痛的镇痛药的临床应用潜力。

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