See R E, Lynch A M, Sorg B A
Department of Psychology, Washington State University, Pullman 99164, USA.
Neuroscience. 1996 May;72(1):99-104. doi: 10.1016/0306-4522(95)00540-4.
The effects of unique profile antipsychotic drugs on dopamine D2 receptors and D2 receptor messenger RNA were assessed following subchronic administration in rats. Male, Sprague-Dawley rats were administered oral haloperidol, clozapine, metoclopramide or no drug for three weeks via their drinking water. Tissue from the medial nucleus accumbens and dorsolateral caudate-putamen was dissected and analyzed by Northern blot analysis for levels of dopamine D2 receptor messenger RNA and binding assays conducted with [3H]spiperone for dopamine D2 receptors. Haloperidol and metoclopramide, but not clozapine, significantly increased [3H]spiperone in the caudate-putamen, but not the nucleus accumbens. Clozapine significantly decreased D2 messenger RNA levels in the caudate-putamen and the nucleus accumbens, while metoclopramide and haloperidol had no significant effect in either brain region. The finding of decreased D2 receptor messenger RNA levels produced by subchronic clozapine may account for the lack of striatal D2 receptor up-regulation, which was robustly observed after subchronic haloperidol and metoclopramide. Furthermore, since haloperidol and metoclopramide have a high liability for motor side effects, the current results relate favorably to the low motor side effect profile of clozapine.
在大鼠亚慢性给药后,评估了独特剂型抗精神病药物对多巴胺D2受体及D2受体信使核糖核酸(mRNA)的影响。通过饮用水给雄性Sprague-Dawley大鼠口服氟哌啶醇、氯氮平、甲氧氯普胺或不给药,持续三周。解剖伏隔核内侧和背外侧尾状核-壳核的组织,通过Northern印迹分析检测多巴胺D2受体信使核糖核酸的水平,并用[3H]螺哌隆进行结合试验以检测多巴胺D2受体。氟哌啶醇和甲氧氯普胺(而非氯氮平)显著增加了尾状核-壳核中[3H]螺哌隆的结合,但伏隔核中未增加。氯氮平显著降低了尾状核-壳核和伏隔核中D2信使核糖核酸的水平,而甲氧氯普胺和氟哌啶醇在这两个脑区均无显著影响。亚慢性氯氮平导致D2受体信使核糖核酸水平降低的这一发现,可能解释了为何未观察到纹状体D2受体上调,而在亚慢性氟哌啶醇和甲氧氯普胺给药后则明显观察到这种上调。此外,由于氟哌啶醇和甲氧氯普胺有较高的运动副作用风险,当前结果与氯氮平较低的运动副作用特征相符。