囊泡单胺转运体
多巴胺能
纹状体
化学
多巴胺
正电子发射断层摄影术
帕金森病
内科学
多巴胺转运体
单胺类神经递质
内分泌学
多巴胺质膜转运蛋白
神经科学
结合势
囊泡单胺转运体2
哌醋甲酯
心理学
医学
生物化学
疾病
受体
精神科
注意缺陷多动障碍
血清素
作者
Chong S. Lee,Ali Samii,Vesna Sossi,Thomas J. Ruth,Michael Schulzer,James E. Holden,Jess Wudel,Pramod Kr. Pal,Raúl de la Fuente‐Fernández,Donald B. Calne,A. Jon Stoessl
标识
DOI:10.1002/1531-8249(200004)47:4<493::aid-ana13>3.3.co;2-w
摘要
Clinical symptoms of Parkinson's disease (PD) do not manifest until dopamine (DA) neuronal loss reaches a symptomatic threshold. To explore the mechanisms of functional compensation that occur in presynaptic DA nerve terminals in PD, we compared striatal positron emission tomographic (PET) measurements by using [11C]dihydrotetrabenazine ([11C]DTBZ; labeling the vesicular monoamine transporter type 2), [11C]methylphenidate (labeling the plasma membrane DA transporter), and [18F]dopa (reflecting synthesis and storage of DA). Three consecutive PET scans were performed in three-dimensional mode by using each tracer on 35 patients and 16 age-matched, normal controls. PET measurements by the three tracers were compared between subgroups of earlier and later stages of PD, between drug-naive and drug-treated subgroups of PD, and between subregions of the parkinsonian striatum. The quantitative relationships of [18F]dopa and [11C]DTBZ, and of [11C]methylphenidate and [11C]DTBZ, were compared between the PD and the normal control subjects. We found that [18F]dopa Ki was reduced less than the binding potential (Bmax/Kd) for [11C]DTBZ in the parkinsonian striatum, whereas the [11C]methylphenidate binding potential was reduced more than [11C]DTBZ binding potential. These observations suggest that the activity of aromatic L-amino acid decarboxylase is up-regulated, whereas the plasma membrane DA transporter is down-regulated in the striatum of patients with PD. Ann Neurol 2000;47:493–503.
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