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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Evaluation of dopaminergic presynaptic integrity: 6-(18F)fluoro-L-dopa versus 6-(18F)fluoro-L-m-tyrosine.
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Evaluation of dopaminergic presynaptic integrity: 6-(18F)fluoro-L-dopa versus 6-(18F)fluoro-L-m-tyrosine.

机译:多巴胺能突触前完整性的评估:6-(18F)氟-L-多巴对6-(18F)氟-L-m-酪氨酸。

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The effectiveness of 6-[18F]fluoro-L-m-tyrosine (6FMT) to evaluate dopamine presynaptic integrity was compared to that of 6-[18F]fluoro-L-dopa (6FDOPA) in vivo by positron emission tomography (PET). Six normal and six 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP)-lesioned monkeys received 6FDOPA and 6FMT PET scans on separate occasions with identical scanning protocols. Four measures, the rate of uptake of tracer into striatum using either the arterial input function (Ki) or the activity in the occipital cortex as the input function (Kc), the rate of loss of striatal radioactivity (k(loss)), and an index of "effective turnover" of dopamine (k(loss)/Ki), were obtained for both tracers during extended PET studies. 6-[18F]Fluoro-L-m-tyrosine was as effective as 6FDOPA in separating normals from MPTP-lesioned subjects on the basis of the uptake rate constants Ki and Kc. However, in contrast to 6FDOPA, it was not possible to differentiate the normal from the lesioned animal using k(loss) or k(loss)/Ki for 6FMT. Thus, FMT appears to be a reasonable, highly specific tracer for studying the activity of aromatic dopa decarboxylase enzyme as an index of presynaptic integrity. However, if one is interested in investigating further the metabolic pathway and obtaining an in vivo estimate of the effective turnover of dopamine (after pharmacologic manipulation, for example), 6FDOPA remains the tracer of choice.
机译:通过正电子发射断层扫描(PET)将6- [18F]氟-L-间-酪氨酸(6FMT)评估体内多巴胺突触前完整性与6- [18F]氟-L-多巴(6FDOPA)的有效性进行了比较。六只正常和六只1-甲基-4-苯基-1,2,3,6-四氢吡啶(MPTP)病变的猴子分别在相同的扫描方案下分别接受了6FDOPA和6FMT PET扫描。四种测量方法:使用动脉输入功能(Ki)或枕叶皮质活度作为输入功能(Kc)的示踪剂摄取到纹状体中的速率,纹状体放射性丧失的速率(k(loss))和在扩展的PET研究中,两种示踪剂均获得了多巴胺的“有效周转率”指数(k(损失)/ Ki)。根据摄取速率常数Ki和Kc,6- [18F]氟-L-间-酪氨酸在将正常人从MPTP病变的受试者中分离出来时与6FDOPA一样有效。但是,与6FDOPA相比,对于6FMT,不可能使用k(loss)或k(loss)/ Ki区分正常动物和病变动物。因此,FMT似乎是一种合理的,高度特异性的示踪剂,可用于研究芳香族多巴脱羧酶作为突触前完整性指标的活性。但是,如果有兴趣进一步研究代谢途径并获得体内对多巴胺有效转换的估计(例如,在药理学操作之后),则6FDOPA仍然是选择的示踪剂。

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