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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >The role of the striatum in the mouse in behavioral sensitization to amphetamine.
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The role of the striatum in the mouse in behavioral sensitization to amphetamine.

机译:纹状体在小鼠对苯丙胺的行为致敏中的作用。

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摘要

Previous results of pharmacological studies of the mechanisms of amphetamine- and cocaine-induced stereotypy in the mouse suggest the involvement of dopaminergic, glutamatergic and GABAergic systems in the striatum. The present experiments were designed to evaluate pharmacologically the role of these neuroeffector systems in behavioral sensitization. Whether administered systemically or in the striatum, pretreatment with the neurotransmitter antagonists, sulpiride, bicuculline and CPP, blocked both the induction and the expression of behavioral sensitization. Efforts to induce sensitization or evoke expression with intrastriatal microinjections of amphetamine, NMDLA or THIP were not successful. The data indicate that these three neuroeffector systems interact at the level of the striatum to mediate the induction and expression of behavioral sensitization to amphetamine. The results are discussed in light of our previous reports and lead to the conclusion that two groups of drugs that affect sensitization can be defined: (1) antagonists of the dopaminergic, GABAergic and glutamatergic systems which block the acute effects of amphetamine as well as the induction and expression of sensitization and (2) another group of drugs which antagonize only sensitization-associated phenomena. The mouse data suggest that both the induction and the expression of sensitization involve not only multiple loci but also novel neuroeffector systems.
机译:苯丙胺和可卡因诱发小鼠刻板印象的机制的药理研究的先前结果表明,纹状体中涉及多巴胺能,谷氨酸能和GABA能系统。本实验旨在评估这些神经效应系统在行为敏化中的药理作用。无论是全身给药还是纹状体给药,用神经递质拮抗剂,舒必利,双瓜氨酸和CPP进行预处理均会阻止行为敏化的诱导和表达。纹状体内注射苯丙胺,NMDLA或THIP诱导致敏或诱发表达的努力均未成功。数据表明这三个神经效应系统在纹状体水平上相互作用,以介导对苯丙胺的行为敏化的诱导和表达。根据我们以前的报告对结果进行了讨论,得出的结论是可以定义两类影响致敏作用的药物:(1)多巴胺能,GABA能和谷氨酸能系统的拮抗剂,它们阻断苯丙胺和苯丙胺的急性作用。诱导和表达致敏作用;(2)另一组仅拮抗致敏相关现象的药物。小鼠数据表明,致敏的诱导和表达不仅涉及多个基因座,还涉及新型的神经效应系统。

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