Shanghai Key Laboratory for Molecular Engineering of Chiral Drugs, School of Pharmacy, Shanghai Jiao Tong University, No. 800 Dongchuan Rd., 200240, Shanghai, China.
Nat Commun. 2021 Feb 12;12(1):1006. doi: 10.1038/s41467-021-21303-3.
Aliphatic amine, especially tertiary aliphatic amine, is one of the most popular functionalities found in pharmaceutical agents. The Mannich reaction is a classical and widely used transformation for the synthesis of β-amino-carbonyl products. Due to an ionic nature of the mechanism, the Mannich reaction can only use non-enolizable aldehydes as substrates, which significantly limits the further applications of this powerful approach. Here we show, by employing a radical process, we are able to utilize enolizable aldehydes as substrates and develop the three-component radical homo Mannich reaction for the streamlined synthesis of γ-amino-carbonyl compounds. The electrophilic radicals are generated from thiols via the desulfurization process facilitated by visible-light, and then add to the electron-rich double bonds of the in-situ formed enamines to provide the products in a single step. The broad scope, mild conditions, high functional group tolerance, and modularity of this metal-free approach for the synthesis of complex tertiary amine scaffolds will likely be of great utility to chemists in both academia and industry.
脂肪族胺,特别是叔脂肪族胺,是药物制剂中最常见的官能团之一。曼尼希反应是合成β-氨基羰基产物的经典且广泛使用的转化方法。由于该机理具有离子特性,曼尼希反应只能使用非烯醇醛作为底物,这极大地限制了这种强大方法的进一步应用。在这里,我们通过采用自由基过程,能够利用烯醇醛作为底物,并开发三组分自由基同型曼尼希反应,以流线型方式合成γ-氨基羰基化合物。亲电自由基通过可见光促进的脱硫过程从硫醇中生成,然后加成到原位形成的烯胺的富电子双键上,以一步法提供产物。这种无金属方法用于合成复杂的叔胺支架的广泛的适用范围、温和的条件、高官能团耐受性和模块化,可能对学术界和工业界的化学家都非常有用。