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δ-阿片受体介导对大鼠背角神经元急性和持续性伤害性诱发反应的抑制作用。

Delta-opioid mediated inhibitions of acute and prolonged noxious-evoked responses in rat dorsal horn neurones.

作者信息

Sullivan A F, Dickenson A H, Roques B P

机构信息

Department of Pharmacology, University College London.

出版信息

Br J Pharmacol. 1989 Nov;98(3):1039-49. doi: 10.1111/j.1476-5381.1989.tb14636.x.

Abstract
  1. The effects of a selective delta-opioid agonist Tyr-D-Ser(Otbu)-Gly-Phe-Leu-Thr (DSTBULET) were examined on the C- and A beta-evoked responses of convergent dorsal horn neurones in the halothane anaesthetized, intact rat. 2. Intrathecal DSTBULET produced selective dose-dependent inhibitions of electrically-evoked C fibre responses of both superficial and deep neurones. A near-complete inhibition of 83 +/- 5% followed 100 micrograms of DSTBULET and the ED50 was 9 micrograms (13.5 nmol). Inhibitions were antagonised by intrathecal naloxone and ICI 174,864 but were not antagonised by pretreatment with intrathecal beta-funaltrexamine at a dose that blocked mu-opioid effects. By contrast, DSTBULET produced excitations of electrically-evoked responses of cells recorded in a zone intermediate between the superficial and deep neurones. 3. DSTBULET (50 micrograms) was also tested on the more prolonged noxious neuronal response produced by subcutaneous formalin (5%, 50 microliters) into the receptive field. DSTBULET profoundly inhibited the response to formalin. Pretreatment with ICI 174,864 before DSTBULET antagonised the effects of the delta-agonist on the formalin response. 4. The full peptidase inhibitor kelatorphan, known to protect endogenous enkephalins, was also tested on the formalin response. The intrathecal administration of 50 micrograms kelatorphan has previously been shown to inhibit electrically-evoked C fibre resonses of dorsal horn neurones and to be antagonised by ICI 174,864. The same dose of kelatorphan inhibited the formalin response in the present study. 5. From this study it appears that the delta-opioid agonist DSTBULET can produce profound inhibitions of the responses of convergent neurones to nociceptive afferent inputs. Furthermore, activation of delta-opioid receptors either by DSTBULET, or by protection of endogenous enkephalins with kelatorphan, can inhibit a more prolonged chemically-evoked nociceptive input onto these dorsal horn neurones.
摘要
  1. 研究了选择性δ-阿片受体激动剂酪氨酰-D-丝氨酸(叔丁基)-甘氨酰-苯丙氨酰-亮氨酰-苏氨酸(DSTBULET)对氟烷麻醉的完整大鼠背角汇聚神经元C纤维和Aβ纤维诱发反应的影响。2. 鞘内注射DSTBULET对浅、深神经元的电诱发C纤维反应产生选择性剂量依赖性抑制。注射100微克DSTBULET后,抑制率接近完全,为83±5%,半数有效剂量(ED50)为9微克(13.5纳摩尔)。鞘内注射纳洛酮和ICI 174,864可拮抗这种抑制作用,但预先鞘内注射能阻断μ-阿片受体效应剂量的β-芬太尼环已胺则不能拮抗。相比之下,DSTBULET可使浅、深神经元之间区域记录的细胞电诱发反应兴奋。3. 还对DSTBULET(50微克)对皮下注射福尔马林(5%,50微升)至感受野所产生的更持久的伤害性神经元反应进行了测试。DSTBULET可显著抑制对福尔马林的反应。在注射DSTBULET之前预先注射ICI 174,864可拮抗δ-激动剂对福尔马林反应的影响。4. 已知能保护内源性脑啡肽的全肽酶抑制剂凯拉托芬也用于测试福尔马林反应。先前已表明鞘内注射50微克凯拉托芬可抑制背角神经元的电诱发C纤维反应,并可被ICI 174,864拮抗。在本研究中,相同剂量的凯拉托芬抑制了福尔马林反应。5. 从本研究看来,δ-阿片受体激动剂DSTBULET可对汇聚神经元对伤害性传入输入的反应产生显著抑制。此外,DSTBULET激活δ-阿片受体,或用凯拉托芬保护内源性脑啡肽,均可抑制对这些背角神经元更持久的化学诱发伤害性输入。

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