化学
体内
体内分布
结合
组合化学
葡萄糖醛酸
新陈代谢
亲核细胞
放射化学
立体化学
体外
生物化学
催化作用
生物技术
数学分析
生物
数学
作者
Hiroyuki Suzuki,Yuta Kaizuka,Maho Tatsuta,Hiroshi Tanaka,Nana Washiya,Yoshifumi Shirakami,Kazuhiro Ooe,Atsushi Toyoshima,Tadashi Watabe,Tokuo Teramoto,Iwao Sasaki,Shigeki Watanabe,Noriko S. Ishioka,Jun Hatazawa,Tomoya Uehara,Yasushi Arano
标识
DOI:10.1021/acs.jmedchem.1c01147
摘要
The high in vivo stability of 2,2-dihydroxymethyl-3-[18F]fluoropropyl-2-nitroimidazole ([18F]DiFA) prompted us to evaluate neopentyl as a scaffold to prepare a radiotheranostic system with radioiodine and astatine. Three DiFA analogues with one, two, or without a hydroxyl group were synthesized. While all 125I-labeled compounds remained stable against nucleophilic substitution, only a 125I-labeled neopentyl glycol was stable against cytochrome P450 (CYP)-mediated metabolism and showed high stability against in vivo deiodination. 211At-labeled neopentyl glycol also remained stable against both nucleophilic substitution and CYP-mediated metabolism. 211At-labeled neopentyl glycol showed the biodistribution profiles similar to those of its radioiodinated counterpart in contrast to the 125I/211At-labeled benzoate pair. The urine analyses confirmed that 211At-labeled neopentyl glycol was excreted in the urine as a glucuronide conjugate with the absence of free [211At]At-. These findings indicate that neopentyl glycol would constitute a promising scaffold to prepare a radiotheranostic system with radioiodine and 211At.
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