Department of Nuclear Medicine and Molecular Imaging, University Medical Center Groningen, University of Groningen, 9713 GZ Groningen, The Netherlands.
Department of Drug Design, Groningen Research Institute of Pharmacy, University of Groningen, 9713 AV Groningen, The Netherlands.
Molecules. 2019 Nov 20;24(23):4210. doi: 10.3390/molecules24234210.
There is an unmet need for late-stage F-fluorination strategies to label molecules with a wide range of relevant functionalities to medicinal chemistry, in particular (hetero)arenes, aiming to obtain unique in vivo information on the pharmacokinetics/pharmacodynamics (PK/PD) using positron emission tomography (PET). In the last few years, Cu-mediated oxidative radiofluorination of arylboronic esters/acids arose and has been successful in small molecules containing relatively simple (hetero)aromatic groups. However, this technique is sparsely used in the radiosynthesis of clinically significant molecules containing more complex backbones with several aromatic motifs. In this work, we add a new entry to this very limited database by presenting our recent results on the F-fluorination of an arylboronic ester derivative of atorvastatin. The moderate average conversion of [F]F (12%), in line with what has been reported for similarly complex molecules, stressed an overview through the literature to understand the radiolabeling variables and limitations preventing consistently higher yields. Nevertheless, the current disparity of procedures reported still hampers a consensual and conclusive output.
目前,人们迫切需要晚期 F-氟代策略来标记具有广泛相关功能的分子,这些分子与药物化学有关,特别是(杂)芳族化合物,旨在使用正电子发射断层扫描(PET)获得有关药代动力学/药效学(PK/PD)的独特体内信息。在过去的几年中,Cu 介导的芳基硼酸酯/酸的氧化放射性氟代反应已经出现,并在含有相对简单(杂)芳族基团的小分子中取得了成功。然而,该技术在含有多个芳族基序的更复杂骨架的临床相关分子的放射性合成中应用较少。在这项工作中,我们通过展示我们最近关于阿托伐他汀芳基硼酸酯衍生物的 F-氟代反应的结果,为这个非常有限的数据库添加了一个新条目。[F]F 的中等平均转化率(12%)与类似复杂分子的报道一致,这强调了通过文献综述来了解放射性标记变量和限制,以防止始终获得更高产率。然而,目前报道的程序差异仍然阻碍了达成一致和结论性的结果。