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首页> 外文期刊>Genes, brain, and behavior >Role of dopamine D1-like receptors in methamphetamine locomotor responses of D2 receptor knockout mice.
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Role of dopamine D1-like receptors in methamphetamine locomotor responses of D2 receptor knockout mice.

机译:多巴胺D1样受体在D2受体基因敲除小鼠的甲基苯丙胺运动反应中的作用。

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Behavioral sensitization to psychostimulants manifests as an increased locomotor response with repeated administration. Dopamine systems are accepted to play a fundamental role in sensitization, but the role of specific dopamine receptor subtypes has not been completely defined. This study used the combination of dopamine D2 receptor-deficient mice and a D1-like antagonist to examine dopamine D1 and D2 receptor involvement in acute and sensitized locomotor responses to methamphetamine. Absence of the dopamine D2 receptor resulted in attenuation of the acute stimulant effects of methamphetamine. Mutant and wild-type mice exhibited sensitization that lasted longer within the time period of the challenge test in the mutant animals. Pretreatment with the D1-like receptor antagonist SCH 23390 produced more potent reductions in the acute and sensitized locomotor responses to methamphetamine in D2 receptor-deficient mice than in wild-type mice; however, the expression of locomotor sensitization when challenged with methamphetamine alone was equivalently attenuated by previous treatment with SCH 23390. These data suggest that dopamine D2 receptors play a key role in the acute stimulant and sensitizing effects of methamphetamine and act in concert with D1-like receptors to influence the acquisition of methamphetamine-induced behavioral sensitization, traits that may influence continued methamphetamine use.
机译:对精神兴奋剂的行为敏感性表现为重复给药后运动反应增加。多巴胺系统被认为在致敏中起基本作用,但是具体的多巴胺受体亚型的作用尚未完全确定。这项研究使用了多巴胺D2受体缺陷型小鼠和D1样拮抗剂的组合,检查多巴胺D1和D2受体参与了对甲基苯丙胺的急性和致敏运动反应。多巴胺D2受体的缺乏导致甲基苯丙胺的急性刺激作用减弱。突变型和野生型小鼠在突变动物的攻击试验时间内表现出持续更长的敏化作用。与D2受体缺陷型小鼠相比,用D1样受体拮抗剂SCH 23390进行预处理可使对甲基苯丙胺的急性和致敏运动反应的抑制作用更强。但是,单独用甲基苯丙胺攻击时,运动敏化的表达在先前用SCH 23390处理时会同等减弱。这些数据表明,多巴胺D2受体在甲基苯丙胺的急性刺激和敏化作用中起关键作用,并与D1样协同受体影响甲基苯丙胺引起的行为敏化的获得,这些特征可能影响甲基苯丙胺的持续使用。

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