小鼠对脊髓上水平的双功能阿片/神经肽FF受体激动剂EN-9和μ-阿片受体配体的镇痛耐受性和交叉耐受性

IF 2.5 3区 医学 Q3 ENDOCRINOLOGY & METABOLISM Neuropeptides Pub Date : 2023-02-01 DOI:10.1016/j.npep.2022.102309
Zhenglan Han , Guofei Jin , Jiancai Tang , Hanyan Wang , Dongmei Guo , Jingping Zhang
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引用次数: 1

摘要

据报道,嵌合肽EN-9是一种κ-阿片类/神经肽FF受体双功能激动剂,可调节慢性疼痛,且无耐受性。许多证据表明,κ-阿片受体的作用不仅由其特异性激活介导,还由下游事件的参与介导,尤其是在大多数情况下与μ-阿片类受体通路在抗伤害和耐受方面的相互作用。本研究在小鼠甩尾试验中研究了侧脑室注射(i.c.v)后EN-9与μ-阿片受体激动剂EM-2、DAMGO和吗啡的急性和慢性交叉耐受。在急性耐受试验中,EN-9对DAMGO表现出对称的急性交叉耐受,但对EM2没有交叉耐受。在慢性耐受性试验中,EN-9在重复给药8天后没有耐受性。然而,EN-9显示出对吗啡的完全交叉耐受和对EM2的对称交叉耐受。此外,抑制NPFF受体可以诱导EN-9的耐受性发展。这些发现表明,在急性和慢性治疗中,脊髓上EN-9诱导的镇痛感受包含额外的成分,这些成分由下游的μ-阿片受体通路介导,而参与EN-9诱导镇痛感受作用的μ-阿片受体或NPFF系统通路的亚型是复杂的。识别受体机制有助于设计优选的双功能阿片类化合物。
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Analgesic tolerance and cross-tolerance to the bifunctional opioid/neuropeptide FF receptors agonist EN-9 and μ-opioid receptor ligands at the supraspinal level in mice

The chimeric peptide EN-9 was reported as a κ-opioid/neuropeptide FF receptors bifunctional agonist that modulated chronic pain with no tolerance. Many lines of evidence have shown that the effect of the κ-opioid receptor is mediated by not only its specific activation but also downstream events participation, especially interaction with the μ-opioid receptor pathway in antinociception and tolerance on most occasions. The present study investigated the acute and chronic cross-tolerance of EN-9 with μ-opioid receptor agonist EM-2, DAMGO, and morphine after intracerebroventricularly (i.c.v) injection in the mouse tail-flick test. In the acute tolerance test, EN-9 showed symmetrical acute cross-tolerance to DAMGO but no cross-tolerance to EM2. In the chronic tolerance test, EN-9 had no tolerance after eight days of repeated administration. However, EN-9 illustrated complete cross-tolerance to morphine and symmetrical cross-tolerance to EM2. In addition, inhibition of NPFF receptor could induce the tolerance development of EN-9. These findings indicated that supraspinal EN-9-induced antinociception contains additional components, which are mediated by the downstream μ-opioid receptor pathway both in acute and chronic treatment, whereas the subtypes of μ-opioid receptor or NPFF system pathway involved in antinociceptive effects induced by EN-9 are complex. Identifying the receptor mechanism could help design preferable bifunctional opioid compounds.

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来源期刊
Neuropeptides
Neuropeptides 医学-内分泌学与代谢
CiteScore
5.40
自引率
6.90%
发文量
55
审稿时长
>12 weeks
期刊介绍: The aim of Neuropeptides is the rapid publication of original research and review articles, dealing with the structure, distribution, actions and functions of peptides in the central and peripheral nervous systems. The explosion of research activity in this field has led to the identification of numerous naturally occurring endogenous peptides which act as neurotransmitters, neuromodulators, or trophic factors, to mediate nervous system functions. Increasing numbers of non-peptide ligands of neuropeptide receptors have been developed, which act as agonists or antagonists in peptidergic systems. The journal provides a unique opportunity of integrating the many disciplines involved in all neuropeptide research. The journal publishes articles on all aspects of the neuropeptide field, with particular emphasis on gene regulation of peptide expression, peptide receptor subtypes, transgenic and knockout mice with mutations in genes for neuropeptides and peptide receptors, neuroanatomy, physiology, behaviour, neurotrophic factors, preclinical drug evaluation, clinical studies, and clinical trials.
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