Chulabhorn Graduate Institute, Chemical Biology Program, Chulabhorn Royal Academy, Kamphaeng Phet 6 Road, Laksi, Bangkok 10210, Thailand.
Org Biomol Chem. 2021 Sep 14;19(34):7390-7402. doi: 10.1039/d1ob01275d. Epub 2021 Jul 23.
Here we reveal a simple generation of deuterium halide (DX) from common and inexpensive reagents readily available in a synthetic chemistry laboratory, i.e. prenyl-, allyl-, and propargyl halides, under mild conditions. We envisaged that in situ generation of an acid, deuterium halide, would be useful for acid-catalyzed reactions and could be employed for organocatalytic deuteration. The present work reports a metal-free method for deuterium labeling covering a broad range of substrate including phenolic compounds (i.e. flavonoids and stilbenes), indoles, pyrroles, carbonyl compounds, and steroids. This method was also applied for commonly used drugs such as loxoprofen, haloperidol, stanolone, progesterone, androstenedione, donepezil, ketorolac, adrenosterone, cortisone, pregnenolone, and dexamethasone. A gram-scale chromatography-free synthesis of some deuterated compounds is demonstrated in this work. This work provides a simple, clean and by-product-free, site-selective deuteration, and the deuterated products are obtained without chromatographic separation. When applying these initiators for other acid-catalyzed reactions, the deuterium isotope effects of DX may provide products which are different from those obtained from reactions using common acids. Although the mechanism of the spontaneous transformation of prenyl halides to acid is unclear, this overlooked chemistry may be useful for many reactions.
在这里,我们揭示了一种简单的氘卤化物(DX)的生成方法,该方法使用常见且廉价的试剂,这些试剂在合成化学实验室中很容易获得,例如烯丙基、炔丙基和卤代物,在温和的条件下进行反应。我们设想,原位生成酸和氘卤化物将有助于酸催化反应,并可用于有机催化氘代反应。本工作报道了一种无金属的氘标记方法,可覆盖包括酚类化合物(如黄酮类和芪类)、吲哚、吡咯、羰基化合物和甾体在内的广泛底物。该方法还可用于洛索洛芬、氟哌啶醇、司坦唑醇、孕酮、雄烯二酮、多奈哌齐、酮咯酸、肾上腺酮、皮质酮、孕烯醇酮和地塞米松等常用药物。本文还展示了一些氘代化合物的无柱色谱规模的自由合成。这项工作提供了一种简单、清洁、无副产物、选择性的氘代方法,无需进行色谱分离即可获得氘代产物。当将这些引发剂应用于其他酸催化反应时,DX 的氘同位素效应可能会提供与使用常见酸获得的产物不同的产物。虽然烯丙基卤化物自发转化为酸的机制尚不清楚,但这种被忽视的化学可能对许多反应有用。