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基底神经节P物质系统对低剂量和高剂量甲基苯丙胺的不同反应。

Distinct responses of basal ganglia substance P systems to low and high doses of methamphetamine.

作者信息

Hanson Glen R, Bush Lloyd, Keefe Kristen A, Alburges Mario E

机构信息

Department of Pharmacology and Toxicology, University of Utah, Salt Lake City 84112, USA.

出版信息

J Neurochem. 2002 Sep;82(5):1171-8. doi: 10.1046/j.1471-4159.2002.01053.x.

Abstract

Substance P (SP) is a neuropeptide closely associated with basal ganglia dopaminergic neurons. Because some neuropeptide systems in the basal ganglia (i.e. neurotensin and metenkephalin) are differentially affected by treatment with low or high doses of methamphetamine, we determined if basal ganglia SP pathways were also differentially influenced in a dose-dependent manner by this psychostimulant. Employing in vivo microdialysis, it was observed that the low dose (0.5 mg/kg) of methamphetamine increased the extracellular concentration of SP in the substantia nigra, but not in globus pallidus or striatum. In contrast, the high dose (10 mg/kg) of methamphetamine did not increase extracellular SP content in any of these structures. The effect of the low-dose methamphetamine treatment on nigral extracellular SP levels was blocked by pre-treatment with either a D1 or D2 antagonist. In addition, 12 h after similar methamphetamine treatments, a dose-dependent differential response in SP tissue levels occurred in some of the regions examined. When these changes occurred, the low dose of methamphetamine usually reduced, whereas the high dose increased, SP tissue content. This study demonstrated opposite responses of the basal ganglia SP system to low and high doses of methamphetamine and suggested that a combination of dopamine D1 and D2 receptor activity contributed to these effects.

摘要

P物质(SP)是一种与基底神经节多巴胺能神经元密切相关的神经肽。由于基底神经节中的一些神经肽系统(即神经降压素和甲硫脑啡肽)受到低剂量或高剂量甲基苯丙胺治疗的不同影响,我们确定了这种精神兴奋剂是否也以剂量依赖的方式对基底神经节SP通路产生不同影响。采用体内微透析技术,观察到低剂量(0.5 mg/kg)的甲基苯丙胺可增加黑质中SP的细胞外浓度,但苍白球或纹状体中则没有。相反,高剂量(10 mg/kg)的甲基苯丙胺并未增加这些结构中任何一个的细胞外SP含量。低剂量甲基苯丙胺治疗对黑质细胞外SP水平的影响可被D1或D2拮抗剂预处理所阻断。此外,在类似的甲基苯丙胺治疗12小时后,在所检查的一些区域中,SP组织水平出现了剂量依赖性的差异反应。当这些变化发生时,低剂量的甲基苯丙胺通常会降低,而高剂量则会增加SP组织含量。这项研究表明基底神经节SP系统对低剂量和高剂量甲基苯丙胺有相反的反应,并表明多巴胺D1和D2受体活性的组合促成了这些效应。

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