Superacid Group - Organic Synthesis Team, IC2MP, Université de Poitiers, UMR-CNRS 7285, 4 rue Michel Brunet, TSA 51106, 86073, Poitiers Cedex 9, France.
@rtMolecule, 1 rue Georges Bonnet, Bâtiment B37, 86000, Poitiers, France.
Chemistry. 2022 Sep 1;28(49):e202201583. doi: 10.1002/chem.202201583. Epub 2022 Jul 8.
The field of medicinal chemistry is currently witnessing a deuterium rush owing to the remarkable properties of this element as bioisoster of hydrogen atom. Aromatic hydrogen isotope exchange (HIE) is one of the most studied strategies nowadays as it promises to access deuterium-modified drugs directly from their non-labeled parents. While most of the recent studies focus on metal-catalyzed C-H activation strategy, the use of superacidic conditions has been largely overlooked. This study shows that the use of TfOD as reaction medium allows the late-stage polydeuteration of a broad library of pharmaceuticals bearing a wide array of functional groups, complementing existing procedures.
目前,由于氘作为氢原子的生物等排物的显著特性,药物化学领域正掀起一股氘代热潮。芳香氢同位素交换 (HIE) 是目前研究最多的策略之一,因为它有望直接从未经标记的母体药物中获得氘代药物。虽然最近的大多数研究都集中在金属催化的 C-H 活化策略上,但超酸性条件的应用在很大程度上被忽视了。本研究表明,使用 TfOD 作为反应介质可以实现广泛带有各种官能团的药物的后期多氘代化,从而补充现有的方法。