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无损伤大鼠的药物诱导旋转:黑质 - 纹状体功能正常不对称性的行为和神经化学指标

Drug-induced rotation in rats without lesions: behavioral and neurochemical indices of a normal asymmetry in nigro-striatal function.

作者信息

Jerussi T P, Glick S D

出版信息

Psychopharmacology (Berl). 1976 Jun 23;47(3):249-60. doi: 10.1007/BF00427609.

Abstract

Normal unoperated rats were tested for rotation (i.e., circling behavior) in a spherical "rotometer" and dose-response relationships were generated using d-amphetamine, apomorphine, L-Dopa, haloperidol, and scopolamine. The rotation induced by amphetamine was significantly antagonized by alpha-methyl-p-tyrosine and haloperidol, but not by diethyldithiocarbamate. The rotation elicited by apomorphine was unaffected by alpha-methyl-p-tyrosine. Rotation was not necessarily in the same direction with high and low doses of amphetamine, or amphetamine and apomorphine administered a week apart from each other. Dopaminergic-cholinergic interactions were evident, since pilocarpine antagonized amphetamine-induced rotation whereas scopolamine did not; scopolamine elicited rotation in the same direction as that induced by amphetamine. Left and right striatal dopamine and tel-diencephalic norepinephrine levels were determined in rats injected with various doses of amphetamine and tested for rotation. There were significant bilateral differences in striatal dopamine which were related to the direction of rotation. Since amphetamine was found to be equally distributed to the two sides of the brain, the difference in striatal dopamine appeared to be the neurochemical substrate for rotation in normal rats. These results suggest that normal rats have asymmetrical levels of striatal dopamine as well as an asymmetrical complement of striatal dopamine receptors.

摘要

对正常未手术的大鼠在球形“旋转计”中进行旋转测试(即转圈行为),并使用d-苯丙胺、阿扑吗啡、左旋多巴、氟哌啶醇和东莨菪碱生成剂量反应关系。苯丙胺诱导的旋转被α-甲基-p-酪氨酸和氟哌啶醇显著拮抗,但不被二乙基二硫代氨基甲酸盐拮抗。阿扑吗啡引起的旋转不受α-甲基-p-酪氨酸影响。高剂量和低剂量苯丙胺,或间隔一周给予苯丙胺和阿扑吗啡时,旋转方向不一定相同。多巴胺能-胆碱能相互作用明显,因为毛果芸香碱拮抗苯丙胺诱导的旋转,而东莨菪碱则不然;东莨菪碱引起的旋转方向与苯丙胺诱导的相同。测定注射不同剂量苯丙胺并进行旋转测试的大鼠左右纹状体多巴胺和终脑间脑去甲肾上腺素水平。纹状体多巴胺存在显著的双侧差异,这与旋转方向有关。由于发现苯丙胺在大脑两侧分布均匀,纹状体多巴胺的差异似乎是正常大鼠旋转的神经化学基础。这些结果表明,正常大鼠纹状体多巴胺水平不对称,纹状体多巴胺受体的补充也不对称。

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