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用于维生素B1及其前药的正电子发射断层扫描体内分子成像的(11)C标记硫胺素和呋喃硫胺素的合成

Synthesis of (11)C-Labeled Thiamine and Fursultiamine for in Vivo Molecular Imaging of Vitamin B1 and Its Prodrug Using Positron Emission Tomography.

作者信息

Doi Hisashi, Mawatari Aya, Kanazawa Masakatsu, Nozaki Satoshi, Nomura Yukihiro, Kitayoshi Takahito, Akimoto Kouji, Suzuki Masaaki, Ninomiya Shinji, Watanabe Yasuyoshi

机构信息

†Division of Bio-Function Dynamics Imaging, RIKEN Center for Life Science Technologies (CLST), 6-7-3 Minatojima-Minamimachi, Chuo-ku, Kobe, Hyogo 650-0047, Japan.

‡Takeda Pharmaceutical Company Limited, 12-10 Nihonbashi 2-Chome, Chuo-ku, Tokyo 103-8668, Japan.

出版信息

J Org Chem. 2015 Jun 19;80(12):6250-8. doi: 10.1021/acs.joc.5b00685. Epub 2015 Jun 1.

Abstract

To enable in vivo analysis of the kinetics of vitamin B1 (thiamine) and its derivatives by positron emission tomography (PET), (11)C-labeled thiamine ([(11)C]-1) has been synthesized. This was carried out via a rapid, multistep synthesis consisting of Pd(0)-mediated C-[(11)C]methylation of a thiazole ring for 3 min and benzylation with 5-(bromomethyl)pyrimidine for 7 min. The [(11)C]-1 was also converted to (11)C-labeled fursultiamine ([(11)C]-2), a prodrug of vitamin B1, by disulfide formation with S-tetrahydrofurfurylthiosulfuric acid sodium salt. Characterization of [(11)C]-1 and [(11)C]-2 showed them to be suitable for use as PET probes for in vivo pharmacokinetic and medical studies. The total durations of the preparations of [(11)C]-1 and [(11)C]-2 were shorter than 60 and 70 min, respectively. The [(11)C]CH3I-based decay-corrected radiochemical yields of [(11)C]-1 and [(11)C]-2 were 9-16% and 4-10%, respectively. The radioactivities of the final injectable solutions of [(11)C]-1 and [(11)C]-2 were 400-700 and 100-250 MBq, respectively. The radiochemical purity of both [(11)C]-1 and [(11)C]-2 was 99%, and the chemical purities of [(11)C]-1 and [(11)C]-2 were 99% and 97-99%, respectively. In vivo PET imaging of normal rats was illustrated by the distribution of [(11)C]-1 and [(11)C]-2 following intravenous injection.

摘要

为了通过正电子发射断层扫描(PET)对维生素B1(硫胺素)及其衍生物的动力学进行体内分析,已合成了(11)C标记的硫胺素([(11)C]-1)。这是通过快速的多步合成实现的,该合成包括噻唑环的Pd(0)介导的C-[(11)C]甲基化3分钟以及与5-(溴甲基)嘧啶进行苄基化7分钟。[(11)C]-1还通过与S-四氢糠基硫代硫酸钠形成二硫键转化为维生素B1的前药(11)C标记的呋喃硫胺([(11)C]-2)。[(11)C]-1和[(11)C]-2的表征表明它们适合用作PET探针用于体内药代动力学和医学研究。[(11)C]-1和[(11)C]-2的制备总时长分别短于60分钟和70分钟。基于[(11)C]CH3I的[(11)C]-1和[(11)C]-2的衰变校正放射化学产率分别为9 - 16%和4 - 10%。[(11)C]-1和[(11)C]-2最终可注射溶液的放射性分别为400 - 700 MBq和100 - 250 MBq。[(11)C]-1和[(11)C]-2的放射化学纯度均为99%,[(11)C]-1和[(11)C]-2的化学纯度分别为99%和97 - 99%。静脉注射后[(11)C]-1和[(11)C]-2的分布说明了正常大鼠的体内PET成像。

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