N.P.Bechtereva Institute of the Human Brain, 197376 St.-Petersburg, Russia.
Institute of Neuroscience and Medicine, INM-5: Nuclear Chemistry, Forschungszentrum Jülich GmbH, 52425 Jülich, Germany.
Molecules. 2019 Sep 3;24(17):3197. doi: 10.3390/molecules24173197.
In the era of personalized precision medicine, positron emission tomography (PET) and related hybrid methods like PET/CT and PET/MRI gain recognition as indispensable tools of clinical diagnostics. A broader implementation of these imaging modalities in clinical routine is closely dependent on the increased availability of established and emerging PET-tracers, which in turn could be accessible by the development of simple, reliable, and efficient radiolabeling procedures. A further requirement is a GMP production of imaging probes in automated synthesis modules. Herein, a novel protocol for the efficient preparation of F-labeled aromatics via Cu-mediated radiofluorination of (aryl)(mesityl)iodonium salts without the need of evaporation steps is described. Labeled aromatics were prepared in high radiochemical yields simply by heating of iodonium [F]fluorides with the Cu-mediator in methanolic DMF. The iodonium [F]fluorides were prepared by direct elution of F from an anion exchange resin with solutions of the corresponding precursors in MeOH/DMF. The practicality of the novel method was confirmed by the racemization-free production of radiolabeled fluorophenylalanines, including hitherto unknown 3-[F]FPhe, in 22-69% isolated radiochemical yields as well as its direct implementation into a remote-controlled synthesis unit.
在个性化精准医学时代,正电子发射断层扫描(PET)和相关的混合方法,如 PET/CT 和 PET/MRI,作为临床诊断不可或缺的工具得到认可。这些成像方式在临床常规中的更广泛应用,紧密依赖于既定和新兴的 PET 示踪剂的可用性增加,而这反过来又可以通过开发简单、可靠和高效的放射性标记程序来实现。进一步的要求是在自动化合成模块中进行符合 GMP 标准的成像探针生产。本文描述了一种通过(芳基)(均三甲苯基)碘鎓盐的 Cu 介导放射性氟化反应,无需蒸发步骤,高效制备 F 标记芳烃的新方案。只需将碘鎓 [F]氟化物与 Cu 介导物在甲醇 DMF 中加热,即可以高放射化学产率制备标记芳烃。碘鎓 [F]氟化物可通过直接从阴离子交换树脂洗脱含相应前体的溶液在 MeOH/DMF 中获得。通过无消旋化制备放射性标记的氟苯丙氨酸,包括迄今未知的 3-[F]FPhe,产率为 22-69%,以及其直接在遥控合成单元中的应用,证实了该新方法的实用性。