首页> 外文期刊>The Journal of Nuclear Medicine >Effect of MPTP on Serotonergic Neuronal Systems and Mitochondrial Complex I Activity in the Living Brain: A PET Study on Conscious Rhesus Monkeys
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Effect of MPTP on Serotonergic Neuronal Systems and Mitochondrial Complex I Activity in the Living Brain: A PET Study on Conscious Rhesus Monkeys

机译:MPTP对生物大脑中血清奈良神神经元体系和线粒体复合体的影响:养肝猴的宠物研究

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The objective of the present PET study was to compare the effect of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) on serotonergic neuronal systems and mitochondrial complex I (MC-I) activity with that of dopamine in conscious rhesus monkeys (Macaca mulatta). Methods: A Parkinson disease monkey model was prepared by repeated administration of MPTP. For the PET measurements, normal and MPTP-treated conscious monkeys received an intravenous injection of C-11-DASB for serotonin transporter, F-18-MPPF for serotonin 1A receptor, C-11-PE2I for dopamine transporter, C-11-6MemTyr for dopamine synthesis, C-11-raclopride for dopamine D-2 receptor, or F-18-BCPP-EF for MC-I. Serotonin and dopamine parameters were calculated using time-activity curves in the cerebellum as the input function. The total distribution volume of F-18-BCPP-EF was assessed using Logan plot graphical analysis with metabolite-corrected plasma as the input function. Results: MPTP-induced diffuse reductions in MC-I activity were observed throughout the brain, except the cerebellum. Significant reductions in the presynaptic dopamine parameters-dopamine transporter and dopamine synthesis-were detected in the striatum and substantia nigra pars compacta of MPTP-treated monkeys, whereas no significant differences in postsynaptic dopamine D-2 receptor binding were observed. Serotonin transporter binding was reduced by MPTP not only in striatal regions but also in extrastriatal regions. In contrast, serotonin 1A receptor binding was unaffected by MPTP anywhere in the brain. In the cortex, the reduction of serotonin transporter binding correlated with that of MC-I. Conclusion: The results obtained by multiparametric PET measurements in a Parkinson disease monkey model demonstrated that chronic MPTP treatment induced reductions not only in the dopaminergic system in the nigro-striatal pathway but also in serotonin transporter in the cortical and subcortical regions. These results suggest that the neurotoxicity of MPTP is not exclusive to the nigrostriatal pathway, as predicted from MC-I damage in the extrastriatal regions of the brain.
机译:目前宠物研究的目的是将1-甲基-4-苯基-1,2,3,6-四氢吡啶(MPTP)对血清酮神经元体系和线粒体复合物I(MC-I)活性的影响进行比较在有意识的恒河猴中的多巴胺(麦卡拉mulatta)。方法:通过反复施用MPTP制备帕金森病猴模型。对于PET测量,正常和MPTP处理的意识猴子接受静脉注射C-11-DASB的静脉内转运蛋白,F-18-MPPF,用于多巴胺转运蛋白的C-11-PE2I,C-11-6Memtyr对于多巴胺合成,用于多巴胺D-2受体的C-11-丙烯锌,或用于MC-1的F-18-BCPP-EF。使用小脑中的时间活性曲线作为输入功能计算血清素和多巴胺参数。使用Logan绘图图形分析评估F-18-BCPP-EF的总分布体积,与代谢物校正的等离子体为输入功能。结果:在整个大脑中观察到MC-I活性的MPTP诱导的弥散降低,除了小脑。在MPTP处理的猴子的纹状体和体内NIGRA PARSCAPTA中检测到突触前多巴胺参数 - 多巴胺转运蛋白和多巴胺合成的显着降低,而观察到突触后的多巴胺D-2受体结合没有显着差异。 MPTP不仅在纹状体区域,而且还在粒状区域中减少了血清素转运蛋白结合。相反,血清素1A受体结合未受大脑中的任何地方受到MPTP的影响。在皮质中,减少血清素转运蛋白结合与MC-1的结合相关。结论:通过帕金森病猴模型的多体宠物测量获得的结果表明,慢性MPTP处理诱导不仅在尼甘氏菌途径中的多巴胺能系统中的减少,而且在皮质和皮质区域中的血清素转运蛋白中。这些结果表明,MPTP的神经毒性不是纽格雷斯途径的排他性,如来自大脑的脐带区域中的MC-I损伤所预测的。

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