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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Modulation of (3H)Dopamine release from rat nucleus accumbens by neuropeptide Y may involve a sigma1-like receptor.
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Modulation of (3H)Dopamine release from rat nucleus accumbens by neuropeptide Y may involve a sigma1-like receptor.

机译:神经肽Y对(3H)多巴胺从伏隔核中释放的调节可能涉及sigma1样受体。

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摘要

Sigma receptors are located in limbic areas, including the nucleus accumbens, where increased dopamine levels have been linked to psychosis and reinforcement. Neuropeptide Y (NPY) has been named as a possible endogenous ligand for a subpopulation of sigma receptors on the basis of its ability to compete for sigma receptor binding. Using a superfusion system, we found that NPY enhanced N-methyl-D-asparate-stimulated [3H]dopamine release in rat nucleus accumbens, whereas the prototypical sigma agonist (+)pentazocine inhibited release. However, four sigma antagonists, one of which is sigma1 selective, as well as a Y receptor antagonist, all reversed the enhancement by NPY and the inhibition by (+)pentazocine. A sigma2-selective antagonist had no effect on either NPY-mediated enhancement or (+)pentazocine-mediated inhibition. [Leu31,Pro34]NPY and NPY13-36 also enhanced release, but the effects were not reversed by sigma antagonists. Peptide YY did not mimic the effect of NPY. Our findings are consistent with the potential role of NPY as an endogenous ligand for a subtype of sigma receptor with characteristics different from Y1, Y2 and Y3 receptors but sensitive to Ac-[3-(2,6-dichlorobenzyl)Tyr27,D-Thr32NPY-(27-36)amide. Our findings suggest a role for NPY, via sigma receptors, in the regulation of dopamine levels in areas of brain critical to psychosis and reinforcement.
机译:Sigma受体位于边缘区域,包括伏隔核,其中多巴胺水平升高与精神病和强化有关。神经肽Y(NPY)因其竞争sigma受体结合的能力而被称为sigma受体亚群的可能内源性配体。使用超融合系统,我们发现NPY增强了伏隔核中N-甲基-D-天冬氨酸刺激的[3H]多巴胺的释放,而原型sigma激动剂(+)喷他佐辛抑制了释放。但是,四种sigma拮抗剂(其中一种是sigma1选择性的)以及Y受体拮抗剂均逆转了NPY的增强作用和(+)pentazocine的抑制作用。 σ2选择性拮抗剂对NPY介导的增强作用或(+)喷他佐辛介导的抑制作用均无作用。 [Leu31,Pro34] NPY和NPY13-36也增强了释放,但作用并未被sigma拮抗剂逆转。肽YY没有模拟NPY的作用。我们的发现与NPY作为sigma受体亚型的内源性配体的潜在作用相一致,该亚型的特征不同于Y1,Y2和Y3受体,但对Ac- [3-(2,6-二氯苄基)Tyr27,D-Thr32NPY敏感-(27-36)酰胺。我们的发现表明,NPY通过sigma受体在调节对精神病和强化至关重要的大脑区域中的多巴胺水平中发挥了作用。

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