首页> 外文期刊>Brain research >Further evidence for the interaction of mu- and delta-opioid receptors in the antinociceptive effects of the dual inhibitor of enkephalin catabolism, RB101(S). A spinal c-Fos protein study in the rat under carrageenin inflammation.
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Further evidence for the interaction of mu- and delta-opioid receptors in the antinociceptive effects of the dual inhibitor of enkephalin catabolism, RB101(S). A spinal c-Fos protein study in the rat under carrageenin inflammation.

机译:在脑啡肽分解代谢双重抑制剂RB101(S)的抗伤害感受作用中,μ阿片和δ阿片受体的相互作用具有进一步的证据。角叉菜胶炎症下大鼠脊髓c-Fos蛋白的研究。

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We have previously shown that RB101, a dual inhibitor of enkephalin-degrading enzymes, decreased carrageenin-evoked c-Fos protein expression at the spinal cord level in awake rats. Moreover, we have also shown that c-Fos expression is a useful marker of the possible direct or indirect interactions between neural pathways, such as opioid and cholecystokinin systems. We now investigated the respective roles of the three main types of opioid receptors (mu, delta, or kappa) and their possible interactions, in the depressive effects of RB101 in inflammatory nociceptive conditions induced by intraplantar carrageenin (6 mg/150 microl of saline). We used beta-funaltrexamine (beta-FNA), naltrindole (NTI), and nor-binaltorphimine (BNI) as specific antagonists for mu, delta- and kappa-opioid receptors, respectively. c-Fos protein-immunoreactivity (c-Fos-IR) was evaluated as the number of c-Fos-IR nuclei in the lumbar spinal cord 90 min after carrageenin. c-Fos-IR nuclei were preferentially located in the superficial (I-II) and deep (V-VI) laminae of segments L4-L5 (areas containing numerous neurons responding exclusively, or not, to nociceptive stimuli). RB101(S) (30 mg/kg, i.v.) significantly reduced the total number of carrageenin-evoked c-Fos-IR nuclei (30% reduction, P<0.01). This effect was completely blocked by beta-FNA (10 mg/kg, i.v.), or NTI (1 mg/kg, i.v.). In contrast, BNI (2.5 mg/kg, i.v.) did not reverse the reducing effects of RB101(S) on carrageenin-evoked c-Fos protein expression. These results suggest that functional interactions occur between mu- and delta-opioid receptors in enkephalin-induced antinociceptive effects.
机译:我们以前已经表明,RB101,脑啡肽降解酶的双重抑制剂,在清醒大鼠中在脊髓水平上降低了角叉菜胶诱发的c-Fos蛋白表达。此外,我们还显示c-Fos表达是神经途径(如阿片类药物和胆囊收缩素系统)之间可能直接或间接相互作用的有用标记。现在,我们研究了三种主要类型的阿片受体(mu,delta或kappa)及其可能的相互作用在RB101抑制由plant骨角叉菜胶(6 mg / 150 microl的盐水)引起的炎性伤害感受中的抑制作用中的各自作用。我们分别使用β-富纳曲胺(β-FNA),纳曲酮(NTI)和去甲双酚(BNI)作为mu,δ和kappa类阿片受体的特异性拮抗剂。 c-Fos蛋白免疫反应性(c-Fos-IR)被评估为角叉菜胶90分钟后腰脊髓中c-Fos-IR核的数目。 c-Fos-IR核优先位于L4-L5区段(包含许多神经元,仅对或不对伤害性刺激作出反应的区域)的浅层(I-II)和深层(V-VI)薄片中。 RB101(S)(30 mg / kg,i.v.)显着减少了角叉菜胶诱发的c-Fos-IR核的总数(减少了30%,P <0.01)。这种作用被β-FNA(10 mg / kg,静脉内)或NTI(1 mg / kg,静脉内)完全阻断。相反,BNI(2.5mg / kg,i.v。)没有逆转RB101(S)对角叉菜胶引起的c-Fos蛋白表达的还原作用。这些结果表明,在脑啡肽诱导的镇痛作用中,μ-阿片受体和δ-阿片受体之间发生功能性相互作用。

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