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Synthesis and evaluation of three ~(18)F-labeled aminophenylbenzothiazoles as amyloid imaging agents

机译:三种〜(18)F标记的氨基苯基苯并噻唑作为淀粉样蛋白显像剂的合成与评价

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摘要

We have developed three fluorine-18 labeled 6-(methyl)amino-2-(4′- fluorophenyl)-1,3-benzothiazoles, which display high in vitro binding affinity for human amyloid β plaques (K_i ≤ 10 nM). The radiolabeled probes were synthesized by aromatic nucleophilic substitution of the corresponding nitro precursor with ~(18)F-fluoride, followed by deprotection of the BOC group if required. Determination of the octanol/water partition coefficient, biodistribution studies in mice, and in vivo μPET studies in rats and a rhesus monkey showed that initial brain uptake was high and brain washout was fast in normal animals. Radiometabolites were quantified in plasma and brain of mice and in monkey plasma using HPLC. Of the tested compounds, [~(18)F]2 (6-amino-2-(4′-[~(18)F]fluorophenyl)- 1,3-benzothiazole) shows the most favorable brain kinetics in mice, rats, and a monkey. Its polar plasma radiometabolites do not cross the blood-brain barrier. The preliminary results strongly suggest that this new fluorinated compound is a promising candidate as a PET brain amyloid imaging agent.
机译:我们已经开发了三种氟18标记的6-(甲基)氨基-2-(4'-氟苯基)-1,3-苯并噻唑,它们对人淀粉样β斑块具有很高的体外结合亲和力(K_i≤10 nM)。通过用〜(18)F-氟化物将相应的硝基前体进行芳族亲核取代,然后根据需要对BOC基团进行脱保护,来合成放射性标记的探针。辛醇/水分配系数的测定,小鼠的生物分布研究以及大鼠和恒河猴的体内μPET研究表明,正常动物的初始大脑摄入量很高,而脑冲洗速度很快。使用HPLC对小鼠血浆和脑中以及猴血浆中的放射性代谢物进行定量。在测试的化合物中,[〜(18)F] 2(6-氨基-2-(4'-[〜(18)F]氟苯基)-1,3-苯并噻唑)在小鼠,大鼠中显示出最有利的大脑动力学和一只猴子。它的极性血浆放射性代谢物不会穿过血脑屏障。初步结果强烈表明,这种新的氟化化合物有望作为PET脑淀粉样蛋白成像剂。

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