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内源性阿片肽强啡肽在未受伤小鼠中诱导的伤害感受行为:鞘内注射N-乙基马来酰亚胺抑制强啡肽降解的证据

Nociceptive behavior induced by the endogenous opioid peptides dynorphins in uninjured mice: evidence with intrathecal N-ethylmaleimide inhibiting dynorphin degradation.

作者信息

Tan-No Koichi, Takahashi Hiroaki, Nakagawasai Osamu, Niijima Fukie, Sakurada Shinobu, Bakalkin Georgy, Terenius Lars, Tadano Takeshi

机构信息

Department of Pharmacology, Tohoku Pharmaceutical University, 4-4-1 Komatsushima, Aoba-ku, Sendai 981-8558, Japan.

出版信息

Int Rev Neurobiol. 2009;85:191-205. doi: 10.1016/S0074-7742(09)85015-0.

DOI:10.1016/S0074-7742(09)85015-0
PMID:19607971
Abstract

Dynorphins, the endogenous opioid peptides derived from prodynorphin may participate not only in the inhibition, but also in facilitation of spinal nociceptive transmission. However, the mechanism of pronociceptive dynorphin actions, and the comparative potential of prodynorphin processing products to induce these actions were not fully elucidated. In our studies, we examined pronociceptive effects of prodynorphin fragments dynorphins A and B and big dynorphin consisting of dynorphins A and B, and focused on the mechanisms underlying these effects. Our principal finding was that big dynorphin was the most potent pronociceptive dynorphin; when administered intrathecally into mice at extremely low doses (1-10fmol), big dynorphin produced nociceptive behavior through the activation of the NMDA receptor ion-channel complex by acting on the polyamine recognition site. We next examined whether the endogenous dynorphins participate in the spinal nociceptive transmission using N-ethylmaleimide (NEM) that blocks dynorphin degradation by inhibiting cysteine proteases. Similar to big dynorphin and dynorphin A, NEM produced nociceptive behavior mediated through inhibition of the degradation of endogenous dynorphins, presumably big dynorphin that in turn activates the NMDA receptor ion-channel complex by acting on the polyamine recognition site. Our findings support the notion that endogenous dynorphins are critical neurochemical mediators of spinal nociceptive transmission in uninjured animals. This chapter will review above-described phenomena and their mechanism.

摘要

强啡肽是源自前强啡肽的内源性阿片肽,它不仅可能参与脊髓伤害性感受传递的抑制,还参与其易化过程。然而,强啡肽促伤害感受作用的机制,以及前强啡肽加工产物诱导这些作用的相对潜能尚未完全阐明。在我们的研究中,我们检测了前强啡肽片段强啡肽A和B以及由强啡肽A和B组成的大强啡肽的促伤害感受作用,并着重研究了这些作用的潜在机制。我们的主要发现是,大强啡肽是最有效的促伤害感受性强啡肽;当以极低剂量(1 - 10飞摩尔)鞘内注射到小鼠体内时,大强啡肽通过作用于多胺识别位点激活NMDA受体离子通道复合物,从而产生伤害性感受行为。接下来,我们使用N - 乙基马来酰亚胺(NEM)来检测内源性强啡肽是否参与脊髓伤害性感受传递,NEM通过抑制半胱氨酸蛋白酶来阻断强啡肽的降解。与大强啡肽和强啡肽A类似,NEM通过抑制内源性强啡肽(可能是大强啡肽)的降解产生伤害性感受行为,而大强啡肽又通过作用于多胺识别位点激活NMDA受体离子通道复合物。我们的研究结果支持这样一种观点,即内源性强啡肽是未受伤动物脊髓伤害性感受传递的关键神经化学介质。本章将综述上述现象及其机制。

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Nociceptive behavior induced by the endogenous opioid peptides dynorphins in uninjured mice: evidence with intrathecal N-ethylmaleimide inhibiting dynorphin degradation.内源性阿片肽强啡肽在未受伤小鼠中诱导的伤害感受行为:鞘内注射N-乙基马来酰亚胺抑制强啡肽降解的证据
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Pronociceptive role of dynorphins in uninjured animals: N-ethylmaleimide-induced nociceptive behavior mediated through inhibition of dynorphin degradation.强啡肽在未受伤动物中的促伤害感受作用:N-乙基马来酰亚胺诱导的伤害感受行为通过抑制强啡肽降解介导。
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Intrathecally administered big dynorphin, a prodynorphin-derived peptide, produces nociceptive behavior through an N-methyl-D-aspartate receptor mechanism.鞘内注射大强啡肽(一种源自前强啡肽的肽)通过N-甲基-D-天冬氨酸受体机制产生伤害感受行为。
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Big dynorphin, a prodynorphin-derived peptide produces NMDA receptor-mediated effects on memory, anxiolytic-like and locomotor behavior in mice.大强啡肽是一种源自强啡肽原的肽,它对小鼠的记忆、抗焦虑样行为和运动行为产生NMDA受体介导的作用。
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Cytotoxic effects of dynorphins through nonopioid intracellular mechanisms.强啡肽通过非阿片类细胞内机制产生的细胞毒性作用。
Exp Cell Res. 2001 Sep 10;269(1):54-63. doi: 10.1006/excr.2001.5309.
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Differential sensitivity of recombinant N-methyl-D-aspartate receptor subunits to inhibition by dynorphin.重组N-甲基-D-天冬氨酸受体亚基对强啡肽抑制作用的差异敏感性。
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Direct evidence for the ongoing brain activation by enhanced dynorphinergic system in the spinal cord under inflammatory noxious stimuli.直接证据表明,在炎症性伤害性刺激下,脊髓中增强的强啡肽能系统持续激活。
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Dynorphin block of N-methyl-D-aspartate channels increases with the peptide length.强啡肽对N-甲基-D-天冬氨酸通道的阻断作用随肽长度增加而增强。
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Intrathecal high-dose histamine induces spinally-mediated nociceptive behavioral responses through a polyamine site of NMDA receptors.鞘内注射高剂量组胺通过NMDA受体的多胺位点诱导脊髓介导的伤害性行为反应。
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Structure-activity analysis of dynorphin A toxicity in spinal cord neurons: intrinsic neurotoxicity of dynorphin A and its carboxyl-terminal, nonopioid metabolites.强啡肽A对脊髓神经元毒性的构效分析:强啡肽A及其羧基末端非阿片类代谢产物的内在神经毒性
Exp Neurol. 2001 Mar;168(1):78-87. doi: 10.1006/exnr.2000.7580.

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