Hardy J A, Wester P, Backstrom I, Gottfries J, Oreland L, Stenstrom A, Winblad B
Department of Biochemistry, St. Mary's Hospital Medical School, Norfolk Place, London W2 1PG, U.K.
Neurochem Int. 1987;10(4):445-50. doi: 10.1016/0197-0186(87)90070-2.
The regional distribution of the dopamine and serotonin uptake sites in human brain have been assessed and compared with the distribution of the transmitters and their metabolites measured in the same brains and also with a limited regional distribution of the uptake sites in rat and sheep brain. The affinity of the uptake sites for both transmitters was determined and found to be c. 0.2 ? M in all 3 species. Most dopamine uptake in all species was in caudate and putamen samples. Many regions of the human brain showed no dopamine uptake and little dopamine uptake was seen in sheep cortex or nigral preparations. Dopamine and metabolite concentrations were highest in the caudate, putamen and substantia nigra. Most serotonin uptake was seen in the hypothalamus in all 3 species; less was observed in the striatal regions; the cortical and nigral preparations of sheep brain showed little serotonin uptake though cortical preparations of rat brain had high levels of uptake. In the human brain, other regions did not show serotonin uptake. Highest concentrations of serotonin were found in the substantia nigra and medulla, intermediate concentrations in the putamen, globus pallidus, hypothalamus, olfactory tubercle and thalamus; very low concentrations of serotonin were found in other regions. The use of the human uptake site for pharmacological studies and as a marker for monoaminergic afferents in human health and disease is discussed.
已对人脑多巴胺和5-羟色胺摄取位点的区域分布进行了评估,并与在相同大脑中测量的递质及其代谢产物的分布进行了比较,同时也与大鼠和绵羊脑中摄取位点的有限区域分布进行了比较。测定了摄取位点对这两种递质的亲和力,发现所有3个物种中的亲和力约为0.2μM。所有物种中,大部分多巴胺摄取发生在尾状核和壳核样本中。人脑的许多区域未显示多巴胺摄取,在绵羊皮质或黑质制剂中也几乎未见多巴胺摄取。多巴胺及其代谢产物浓度在尾状核、壳核和黑质中最高。所有3个物种中,大部分5-羟色胺摄取见于下丘脑;在纹状体区域摄取较少;绵羊脑的皮质和黑质制剂显示5-羟色胺摄取较少,而大鼠脑的皮质制剂摄取水平较高。在人脑中,其他区域未显示5-羟色胺摄取。5-羟色胺浓度最高的是黑质和延髓,中等浓度的是壳核、苍白球、下丘脑、嗅结节和丘脑;其他区域5-羟色胺浓度非常低。本文讨论了将人脑摄取位点用于药理学研究以及作为人类健康和疾病中单胺能传入神经标记物的用途。