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N-[11C]甲基化咪唑并吡啶乙酰胺作为外周苯二氮䓬受体PET示踪剂的放射性合成及体内评价

Radiosynthesis and in vivo evaluation of N-[11C]methylated imidazopyridineacetamides as PET tracers for peripheral benzodiazepine receptors.

作者信息

Sekimata Katsuhiko, Hatano Kentaro, Ogawa Mikako, Abe Junichiro, Magata Yasuhiro, Biggio Giovanni, Serra Mariangela, Laquintana Valentino, Denora Nunzio, Latrofa Andrea, Trapani Giuseppe, Liso Gaetano, Ito Kengo

机构信息

Department of Brain Sciences and Molecular Imaging, National Institute for Longevity Sciences, National Center for Geriatrics and Gerontology, Obu, Aichi 474-8522, Japan.

出版信息

Nucl Med Biol. 2008 Apr;35(3):327-34. doi: 10.1016/j.nucmedbio.2007.12.005.

Abstract

Imidazopyridineacetoamide 5-8, a series of novel and potentially selective peripheral benzodiazepine receptor (PBR) ligands with affinities comparable to those of known PBR ligands, was investigated. Radiosyntheses of [11C]5, 6, 7 or 8 was accomplished by N-methylation of the corresponding desmethyl precursors with [11C]methyl iodide in the presence of NaH in dimethylformamide (DMF), resulting in 25% to 77% radiochemical yield and specific activitiy of 20 to 150 MBq/nmol. Each of the labeled compounds was injected in ddY mice, and the radioactivity and weight of dissected peripheral organs and brain regions were measured. Organ distribution of [11C]7 was consistent with the known PBR distribution. Moreover, [11C]7 showed the best combination of brain uptake and PBR binding, leading to its high retention in the olfactory bulb and cerebellum, areas where PBR density is high in mouse brain. Coinjection of PK11195 or unlabeled 7 significantly reduced the brain uptake of [11C]7. These results suggest that [11C]7 could be a useful radioligand for positron emission tomography imaging of PBRs.

摘要

研究了咪唑并吡啶乙酰胺5-8,这是一系列新型且具有潜在选择性的外周苯二氮䓬受体(PBR)配体,其亲和力与已知PBR配体相当。通过在二甲基甲酰胺(DMF)中,在氢化钠存在下,用[11C]甲基碘对相应的去甲基前体进行N-甲基化,完成了[11C]5、6、7或8的放射性合成,放射化学产率为25%至77%,比活度为20至150 MBq/nmol。将每种标记化合物注射到ddY小鼠体内,并测量解剖后的外周器官和脑区的放射性和重量。[11C]7的器官分布与已知的PBR分布一致。此外,[11C]7在脑摄取和PBR结合方面表现出最佳组合,导致其在嗅球和小脑中高度保留,这两个区域在小鼠脑中PBR密度较高。同时注射PK11195或未标记的7可显著降低[11C]7的脑摄取。这些结果表明,[11C]7可能是一种用于PBR正电子发射断层扫描成像的有用放射性配体。

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