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

Zhang, Kaiqiang; Feng, Wanru; Mou, Zhaobiao; Zhang, Lei; Ma, Mengting; Zhao, Zixiao; Liu, Xia; Chen, Xiaoyuan et al. · Nat Commun · 2024

basic_science · Level V

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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<sup>V</sup> 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 <sup>18</sup>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), [<sup>18</sup>F]BFPA-Flurpiridaz and [<sup>18</sup>F]BFPA-E[c(RGDyK)]<sub>2</sub> demonstrate high-contrast target imaging, excellent pharmacokinetics, and negligible defluorination.

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