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首页> 外文期刊>Psychopharmacology >Environmental modulation of the response to amphetamine: dissociation between changes in behavior and changes in dopamine and glutamate overflow in the rat striatal complex.
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Environmental modulation of the response to amphetamine: dissociation between changes in behavior and changes in dopamine and glutamate overflow in the rat striatal complex.

机译:环境对苯丙胺反应的调节:行为变化与大鼠纹状体复合物中多巴胺和谷氨酸溢流变化之间的分离。

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RATIONALE: We have previously shown that environmental novelty enhances the behavioral activating effects of amphetamine and amphetamine-induced expression of the immediate early gene c-fos in the striatal complex, particularly in the most caudal portion of the caudate. In contrast, we found no effect of novelty on the ability of amphetamine to induce dopamine (DA) overflow in the rostral caudate or in the core of the nucleus accumbens. OBJECTIVES: The twofold aim of the present study was to determine the effect of environmental novelty on (1) amphetamine-induced DA overflow in the shell of the nucleus accumbens and in the caudal portions of the caudate, and (2) glutamate and aspartate overflow in the caudal portions of the caudate. METHODS: Two groups of rats with a unilateral 6-hydroxydopamine lesion of the mesostriatal dopaminergic system received amphetamine (0.5 mg/kg, i.v.) in physically identical cages. For one group, the cages were also the home environment, whereas, for the other group, they were a completely novel environment. In vivo microdialysis was used to estimate DA, glutamate, and aspartate concentrations. RESULTS: Environmental novelty enhanced amphetamine-induced rotational behavior (experiments 1-3) but did not alter amphetamine-induced DA overflow in either the shell of the nucleus accumbens (experiment 1) or the caudate (experiment 2). In addition, the ability of environmental novelty to enhance amphetamine-induced behavioral activation was not associated with changes in glutamate or aspartate efflux in the caudate (experiment 3). CONCLUSIONS: The present data indicate that the psychomotor activating effects of amphetamine can be modulated by environmental context independent of its primary neuropharmacological actions in the striatal complex.
机译:理由:我们以前已经证明,环境新颖性增强了苯丙胺和苯丙胺诱导的纹状体复合物中特别是在尾状体最尾端的早期早期基因c-fos的表达的行为激活作用。相反,我们没有发现新颖性对苯丙胺在尾状尾状核或伏隔核的核心中诱导多巴胺(DA)溢出的能力没有影响。目的:本研究的双重目的是确定环境新颖性对(1)苯丙胺诱导的伏安核壳和尾状尾部分中苯丙胺诱导的DA溢出,以及(2)谷氨酸和天冬氨酸溢出的影响。在尾状的尾部。方法:两组患有中叶多巴胺能系统单侧6-羟基多巴胺损伤的大鼠在物理上相同的笼子中接受苯丙胺(0.5 mg / kg,静脉注射)。对于一组,笼子也是家庭环境,而对于另一组,它们是一个完全新颖的环境。体内微透析用于估计DA,谷氨酸和天冬氨酸的浓度。结果:环境新颖性增强了苯丙胺诱导的旋转行为(实验1-3),但没有改变伏安核(实验1)或尾状核(实验2)中苯丙胺诱导的DA溢出。此外,环境新颖性增强苯丙胺诱导的行为激活的能力与尾状谷氨酸或天冬氨酸外排的变化无关(实验3)。结论:目前的数据表明,苯丙胺的精神运动激活作用可以由环境情境调节,而与其在纹状体复合物中的主要神经药理作用无关。

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