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通过亲电活化实现膦酸烷基酯的晚期(放射性)氟代反应。

Late-stage (radio)fluorination of alkyl phosphonates via electrophilic activation.

机构信息

State Key Laboratory of Vaccines for Infectious Diseases, Center for Molecular Imaging and Translational Medicine, School of Public Health, Xiamen University, Xiamen, Fujian, China.

Xiang An Biomedicine Laboratory, School of Public Health, Xiamen University, Xiamen, Fujian, China.

出版信息

Nat Commun. 2024 Nov 28;15(1):10338. doi: 10.1038/s41467-024-54208-y.

Abstract

Constructing organic fluorophosphines, vital drug skeletons, through the direct fluorination of readily available alkyl phosphonates has been impeded due to the intrinsic low electrophilicity of P and the high bond energy of P═O bond. Here, alkyl phosphonates are electrophilically activated with triflic anhydride and N-heteroaromatic bases, enabling nucleophilic fluorination at room temperature to form fluorophosphines via reactive phosphine intermediates. This approach facilitates the late-stage (radio)fluorination of broad dialkyl and monoalkyl phosphonates. Monoalkyl phosphonates derived from targeted drugs, including cyclophosphamide, vortioxetine, and dihydrocholesterol, are effectively fluorinated, achieving notable yields of 47-71%. Radiofluorination of medically significant F-tracers and synthons are completed in radiochemical conversions (radio-TLC) of 51-88% and molar activities up to 251 ± 12 GBq/μmol (initial activity 11.2 GBq) within 10 min at room temperature. Utilizing a phosphonamidic fluoride building block (BFPA), [F]BFPA-Flurpiridaz and [F]BFPA-E[c(RGDyK)] demonstrate high-contrast target imaging, excellent pharmacokinetics, and negligible defluorination.

摘要

通过直接氟化易得的烷基膦酸酯来构建有机氟膦,这是生命药物骨架,但是由于 P 的固有低亲电性和 P═O 键的高键能,这一过程受到阻碍。在这里,三氟甲磺酸酐和 N-杂芳基碱使烷基膦酸酯活化,可在室温下通过反应性膦中间体进行亲核氟化,从而形成氟膦。这种方法促进了广泛的二烷基和单烷基膦酸酯的后期(放射性)氟化。包括环磷酰胺、沃替西汀和二氢胆固醇在内的靶向药物衍生的单烷基膦酸酯可有效地进行氟化,产率高达 47-71%。具有医学意义的 F-示踪剂和合成子的放射性氟化在室温下 10 分钟内即可完成放射性薄层色谱(radio-TLC)转化,收率为 51-88%,摩尔活度高达 251±12GBq/μmol(初始活度 11.2GBq)。利用一个膦酰胺氟化物砌块(BFPA),[F]BFPA-Flurpiridaz 和 [F]BFPA-E[c(RGDyK)] 表现出高对比度的靶标成像、良好的药代动力学和可忽略的脱氟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ccc/11604993/b9ac9accbffe/41467_2024_54208_Fig1_HTML.jpg

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