Hurley M J, Jolkkonen J, Stubbs C M, Jenner P, Marsden C D
Neurodegenerative Diseases Research Centre, Biomedical Sciences Division, Kings College, London, UK.
Brain Res. 1996 Feb 19;709(2):259-64. doi: 10.1016/0006-8993(95)01309-1.
The distribution of the dopamine D3 receptor was studied by receptor autoradiography using [3H]7-OH-DPAT in striatal and extrastriatal brain regions of the common marmoset (Callithrix jacchus). Saturation studies demonstrated that [3H]7-OH-DPAT bound with similar affinity to different regions of marmoset brain. In normal marmosets, specific [3H]7-OH-DPAT binding was found in both striatal and extrastriatal regions. Very high levels of specific [3H]7-OH-DPAT binding were detected in the islands of Calleja and nucleus accumbens but in addition high levels of binding were detected in rostral caudate nucleus and putamen. In common marmosets treated with the selective nigral neurotoxin 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), the levels of specific [3H]7-OH-DPAT binding in striatal and extrastriatal regions were not different to those in normal animals. Chronic treatment of MPTP-treated marmosets with L-DOPA/ carbidopa did not alter the levels of specific [3H]7-OH-DPAT binding in any brain region. These results demonstrate that in common marmosets D3 receptors are located in both striatal and limbic regions. The receptor density is not altered by dopaminergic denervation or by chronic L-DOPA administration. The D3 receptor may, therefore, be important in both the therapeutic and adverse effects of drugs used to treat Parkinson's disease.
使用[3H]7-OH-DPAT,通过受体放射自显影术研究了普通狨猴(Callithrix jacchus)纹状体和纹状体以外脑区中多巴胺D3受体的分布。饱和研究表明,[3H]7-OH-DPAT与狨猴脑不同区域的结合亲和力相似。在正常狨猴中,在纹状体和纹状体以外区域均发现了特异性[3H]7-OH-DPAT结合。在Calleja岛和伏隔核中检测到非常高水平的特异性[3H]7-OH-DPAT结合,但此外,在尾状核头和壳核中也检测到高水平的结合。在用选择性黑质神经毒素1-甲基-4-苯基-1,2,3,6-四氢吡啶(MPTP)处理的普通狨猴中,纹状体和纹状体以外区域的特异性[3H]7-OH-DPAT结合水平与正常动物无异。用左旋多巴/卡比多巴对MPTP处理的狨猴进行慢性治疗,并未改变任何脑区中特异性[3H]7-OH-DPAT结合的水平。这些结果表明,在普通狨猴中,D3受体位于纹状体和边缘区域。多巴胺能去神经支配或慢性左旋多巴给药不会改变受体密度。因此,D3受体可能在用于治疗帕金森病的药物的治疗作用和不良反应中都很重要。