Doi Hisashi, Mawatari Aya, Kanazawa Masakatsu, Nozaki Satoshi, Nomura Yukihiro, Kitayoshi Takahito, Akimoto Kouji, Suzuki Masaaki, Ninomiya Shinji, Watanabe Yasuyoshi
†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.
J Org Chem. 2015 Jun 19;80(12):6250-8. doi: 10.1021/acs.joc.5b00685. Epub 2015 Jun 1.
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.
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。