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用于正电子发射断层扫描(PET)的新型外周苯二氮䓬受体配体[11C]DAA1106:一种用于脑内胶质细胞的成像工具。

Novel peripheral benzodiazepine receptor ligand [11C]DAA1106 for PET: an imaging tool for glial cells in the brain.

作者信息

Maeda Jun, Suhara Tetsuya, Zhang Ming-Rong, Okauchi Takashi, Yasuno Fumihiko, Ikoma Yoko, Inaji Motoki, Nagai Yuji, Takano Akihiro, Obayashi Shigeru, Suzuki Kazutoshi

机构信息

Brain Imaging Project, National Institute of Radiological Sciences, Chiba, Japan.

出版信息

Synapse. 2004 Jun 15;52(4):283-91. doi: 10.1002/syn.20027.

Abstract

Peripheral benzodiazepine receptor (PBR) is expressed in most organs and its expression is reported to be increased in activated microglia in the brain. [(11)C]PK11195 has been widely used for the in vivo imaging of PBRs, but its signal in the brain was not high enough for stable quantitative analysis. We synthesized a novel positron emission tomography (PET) ligand, [(11)C]DAA1106, for PBR and investigated its in vivo properties in rat and monkey brain. High uptake of [(11)C]DAA1106 was observed in the olfactory bulb and choroid plexus area, followed by the pons/medulla and cerebellum by in vivo autoradiography of rat brain, correlating with the binding in vitro. [(11)C]DAA1106 binding was increased in the dorsal hippocampus with neural destruction, suggesting glial reaction. [(11)C]DAA1106 binding was both inhibited and displaced by 1.0 mg/kg of DAA1106 and 5 mg/kg of PK11195 by 80% and 70%, respectively. Specific binding was estimated as 80% of total binding. [(11)C]DAA1106 binding was four times higher compared to the binding of [(11)C]PK11195 in the monkey occipital cortex. These results indicated that [(11)C]DAA1106 might be a good ligand for in vivo imaging of PBR.

摘要

外周苯二氮䓬受体(PBR)在大多数器官中均有表达,据报道其在大脑中活化的小胶质细胞中的表达会增加。[(11)C]PK11195已被广泛用于PBR的体内成像,但它在大脑中的信号不够高,无法进行稳定的定量分析。我们合成了一种用于PBR的新型正电子发射断层扫描(PET)配体[(11)C]DAA1106,并研究了其在大鼠和猴脑中的体内特性。通过大鼠脑的体内放射自显影观察到,[(11)C]DAA1106在嗅球和脉络丛区域摄取较高,其次是脑桥/延髓和小脑,这与体外结合情况相关。在海马背侧神经破坏时,[(11)C]DAA1106的结合增加,提示有胶质细胞反应。1.0mg/kg的DAA1106和5mg/kg的PK11195分别使[(11)C]DAA1106的结合受到80%和70%的抑制并发生位移。特异性结合估计为总结合的80%。在猴枕叶皮质中,[(11)C]DAA1106的结合比[(11)C]PK11195的结合高四倍。这些结果表明,[(11)C]DAA1106可能是用于PBR体内成像的良好配体。

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