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在微反应器中由氟离子和对甲苯磺酸二芳基碘鎓盐快速高效地合成间位取代的[F]氟代芳烃

Rapid and Efficient Radiosyntheses of Meta-substituted [F]Fluoroarenes from [F]Fluoride Ion and Diaryliodonium Tosylates within a Microreactor.

作者信息

Chun Joong-Hyun, Lu Shuiyu, Pike Victor W

机构信息

Molecular Imaging Branch, National Institute of Mental Health, National Institutes of Health, 10 Center Drive, Building 10, Room B3 C346A, Bethesda, MD 20892 USA.

出版信息

European J Org Chem. 2011 Aug;2011(23):4439-4447. doi: 10.1002/ejoc.201100382.

Abstract

Effective methods for the introduction of the short-lived positron-emitter fluorine-18 (t(1/2) = 109.7 min) at high specific radioactivity into fluoroarenes are valuable for the development of radiotracers for molecular imaging with positron emission tomography. Here we have explored the scope of the radiofluorination of diaryliodonium salts with no-carrier-added [(18)F]fluoride ion for the preparation of otherwise difficult to access meta-substituted [(18)F]fluoroarenes. A microfluidic reaction platform was used to establish optimal radiochemical yields. Rapid, high yielding and selective radiofluorinations were achieved in unsymmetrical diaryliodonium tosylates (ArI(+)Ar'TsO(-)) in which Ar carried either a meta electron-withdrawing (CN, NO(2), CF(3)) or a meta electron-donating (Me or MeO) group, and in which the partner aryl group (Ar') was relatively electron-rich, such as Ph, 3-Me-C(6)H(4), 4-MeO-C(6)H(4), 2-thienyl or 5-Me-2-thienyl. The radiofluorination of appropriate diaryliodonium tosylates is therefore a generally useful method for the preparation of simple [(18)F]m-fluoroarenes ([(18)F]ArF).

摘要

将短寿命正电子发射体氟 - 18(t(1/2) = 109.7分钟)以高比活度引入氟芳烃的有效方法对于开发用于正电子发射断层扫描分子成像的放射性示踪剂很有价值。在此,我们探索了用无载体添加的[(18)F]氟离子对二芳基碘鎓盐进行放射性氟化反应的范围,以制备难以通过其他方法获得的间位取代[(18)F]氟芳烃。使用微流控反应平台来确定最佳放射化学产率。在不对称对甲苯磺酸二芳基碘鎓盐(ArI(+)Ar'TsO(-))中实现了快速、高产率和选择性放射性氟化反应,其中Ar带有间位吸电子基团(CN、NO(2)、CF(3))或间位供电子基团(Me或MeO),且其配对芳基(Ar')相对富电子,如Ph、3 - Me - C(6)H(4)、4 - MeO - C(6)H(4)、2 - 噻吩基或5 - Me - 2 - 噻吩基。因此,对合适的对甲苯磺酸二芳基碘鎓盐进行放射性氟化反应是制备简单[(18)F]间氟芳烃([(18)F]ArF)的一种普遍有用的方法。

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