Essig E C, Kilpatrick I C
Department of Pharmacology, School of Medical Sciences, Bristol, U.K.
Neurosci Lett. 1991 Feb 25;123(2):261-4. doi: 10.1016/0304-3940(91)90946-q.
The present study assessed the role of postsynaptic dopamine (DA) receptors in mediating the actions of focal injections of the classical antipsychotic drug, haloperidol, on DA metabolism in the rat amygdala (AMYG) and caudate-putamen (CP) using a high-performance liquid chromatographic assay. One hour after unilateral injection of haloperidol into either site, significant elevations of the DA metabolite, homovanillic acid, were observed in both ipsilateral (+33%) and contralateral (+81%) hemispheres of the CP and in the ipsilateral (+107%) and contralateral AMYG (+121%). Such increased DA metabolism persisted in these regions if focal injections of muscimol (intended to eliminate transmission in postsynaptic output neurones) had been made into either brain area immediately prior to the focal haloperidol injection. It is argued that neurones lying postsynaptic to DA terminals in both the AMYG and CP are unnecessary for the ability of haloperidol to increase DA metabolism in these regions.
本研究使用高效液相色谱分析法,评估了突触后多巴胺(DA)受体在介导经典抗精神病药物氟哌啶醇局部注射对大鼠杏仁核(AMYG)和尾状核-壳核(CP)中DA代谢的作用。在将氟哌啶醇单侧注射到任一部位1小时后,在CP的同侧(+33%)和对侧(+81%)半球以及同侧(+107%)和对侧杏仁核(+121%)中均观察到DA代谢产物高香草酸显著升高。如果在局部注射氟哌啶醇之前立即向任一脑区局部注射蝇蕈醇(旨在消除突触后输出神经元的传递),这些区域的DA代谢增加仍会持续。有人认为,杏仁核和尾状核-壳核中位于DA终末突触后的神经元对于氟哌啶醇增加这些区域DA代谢的能力并非必需。