首页> 外文期刊>Clinical Psychopharmacology and Neuroscience >In Vivo Evaluation of 11C-labeled Three Radioligands for Glycine Transporter 1 in the Mouse Brain
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In Vivo Evaluation of 11C-labeled Three Radioligands for Glycine Transporter 1 in the Mouse Brain

机译:小鼠大脑中甘氨酸转运蛋白1的11 C标记的三个放射性配体的体内评价。

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Objective Glycine transporter 1 (GlyT-1) is one of the most attractive therapeutic targets for schizophrenia. There is great interest in developing radioligands for in vivo imaging of GlyT-1 in the brain using positron emission tomography. Here, we report the properties of three novel non-sarcosine-based radioligands [11C]CHIBA-3007, [11C]CHIBA-3009, and [11C]CHIBA-3011, for GlyT-1 imaging in the mouse brain in vivo . Methods The three radioligands were synthesized by N -[11C] methylation of the corresponding desmethyl precursor. A pharmacological characterization of these radioligands for in vivo imaging of GlyT-1 in the brain was conducted using male ddY mice. Results [11C]CHIBA-3009 and [11C]CHIBA-3011 were scarcely incorporated into the brain, whereas [11C]CHIBA-3007 showed slight but considerable brain uptake. Regional brain uptake of [11C]CHIBA-3007 (medulla oblongata>cerebellum>cortex) was similar to the distribution of the GlyT-1 protein. However, pretreatment with CHIBA-3007 (1 mg/kg) or the GlyT-1 selective inhibitor ALX5407 (N-[(3R)-3-([1,1'-Biphenyl]-4-yloxy)-3-(4-fluorophenyl)propyl]-N-methylglycine) (30 mg/kg) did not significantly decrease brain uptake of [11C]CHIBA-3007, suggesting low specific binding to GlyT-1. Pretreatment with cyclosporin A significantly increased brain uptake of [11C]CHIBA-3009 and [11C]CHIBA-3011, suggesting a role for P-glycoprotein in the brain uptake of these ligands. All three radioligands were rapidly degraded intact forms were 3-18% in plasma and 15-74% in the brain at 15 min after injection. Conclusion The results suggest that these three radioligands are not suitable for in vivo imaging of GlyT-1 in the brain because of low brain uptake and rapid metabolism. Further structural refinement is necessary to enhance brain uptake.
机译:目的甘氨酸转运蛋白1(GlyT-1)是精神分裂症最有吸引力的治疗靶标之一。使用正电子发射断层摄影术开发用于脑中GlyT-1体内成像的放射性配体引起了极大兴趣。在这里,我们报告三种新型的非基于肌氨酸的放射性配体[ 11 C] CHIBA-3007,[ 11 C] CHIBA-3009和[ 11 C] CHIBA-3011,用于体内小鼠大脑中的GlyT-1成像。方法通过相应的去甲基前体的N-[ 11 C]甲基化合成三种放射性配体。使用雄性ddY小鼠对这些放射性配体进行了脑内GlyT-1体内成像的药理学表征。结果[ 11 C] CHIBA-3009和[ 11 C] CHIBA-3011几乎不掺入大脑,而[ 11 C] CHIBA -3007显示有轻度但可观的大脑摄取。 [ 11 C] CHIBA-3007(延髓,小脑>皮层)的区域脑吸收与GlyT-1蛋白的分布相似。但是,用CHIBA-3007(1 mg / kg)或GlyT-1选择性抑制剂ALX5407(N-[(3R)-3-([1,1'-联苯] -4-yloxy)-3-(4 (氟苯基)丙基] -N-甲基甘氨酸(30 mg / kg)不会显着降低[ 11 C] CHIBA-3007的脑摄取,表明与GlyT-1的特异性结合较低。环孢菌素A预处理可显着增加[ 11 C] CHIBA-3009和[ 11 C] CHIBA-3011的大脑摄取,表明P-糖蛋白在大脑摄取中的作用这些配体。注射后15分钟,所有三种放射性配体均迅速降解,完整形式在血浆中为3-18%,在大脑中为15-74%。结论结果表明,这三种放射性配体由于低脑摄取和快速代谢而不适用于脑中GlyT-1的体内成像。需要进一步的结构改进来增强大脑的摄取。

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