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多巴胺对大鼠纹状体中高亲和力谷氨酸摄取的调节作用。

Modulatory effect of dopamine on high-affinity glutamate uptake in the rat striatum.

作者信息

Kerkerian L, Dusticier N, Nieoullon A

出版信息

J Neurochem. 1987 Apr;48(4):1301-6. doi: 10.1111/j.1471-4159.1987.tb05661.x.

Abstract

In vivo electrical stimulation of the frontal cortical areas was found to enhance sodium-dependent high-affinity glutamate uptake (HAGU) measured in rat striatal homogenates. This activating effect was counteracted by in vivo administration of apomorphine and by in vitro addition of dopamine (DA; 10(-8) M) in the incubation medium, and potentiated by in vivo haloperidol administration. At the doses used, the dopaminergic compounds had no effect on basal HAGU. alpha-Methylparatyrosine pretreatment was found to enhance slightly basal HAGU as well as the activating effects of cortical stimulation. Interestingly enough, lesion of dopaminergic neurons by substantia nigra injection of 6-hydroxydopamine (6-OHDA) did not cause any significant change either in basal HAGU or in the effect of cortical stimulation. Measurement of DA effects in vitro in experiments combined with in vivo manipulations of the dopaminergic nigrostriatal and corticostriatal systems showed that the capacity of DA to inhibit striatal HAGU depends directly on the level of the uptake activation reached over basal value. These results suggest that under physiological conditions, the dopaminergic nigrostriatal pathway exerts a modulatory presynaptic action on corticostriatal glutamatergic transmission, counteracting increasing glutamatergic activity. In the case of chronic DA depletion induced by 6-OHDA, striatal adaptations may occur modifying the mechanisms acting at corticostriatal nerve terminal level.

摘要

研究发现,对大鼠额叶皮质区域进行体内电刺激可增强在大鼠纹状体匀浆中测得的钠依赖性高亲和力谷氨酸摄取(HAGU)。体内注射阿扑吗啡以及在孵育培养基中体外添加多巴胺(DA;10⁻⁸ M)可抵消这种激活作用,而体内给予氟哌啶醇则可增强该作用。在所使用的剂量下,多巴胺能化合物对基础HAGU无影响。发现α-甲基对酪氨酸预处理可轻微增强基础HAGU以及皮质刺激的激活作用。有趣的是,通过向黑质注射6-羟基多巴胺(6-OHDA)损伤多巴胺能神经元,无论是基础HAGU还是皮质刺激的效果均未引起任何显著变化。结合对多巴胺能黑质纹状体和皮质纹状体系统进行体内操作的实验,体外测量DA的作用表明,DA抑制纹状体HAGU的能力直接取决于超过基础值所达到的摄取激活水平。这些结果表明,在生理条件下,多巴胺能黑质纹状体通路对皮质纹状体谷氨酸能传递发挥调节性突触前作用,抵消谷氨酸能活性的增加。在由6-OHDA诱导的慢性DA耗竭情况下,纹状体可能会发生适应性变化,从而改变作用于皮质纹状体神经末梢水平的机制。

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