Gómez-Ayuso Javier, Pertejo Pablo, Hermosilla Tomás, Carreira-Barral Israel, Quesada Roberto, García-Valverde María
Departamento de Química, Universidad de Burgos, Burgos 09001, Spain.
Beilstein J Org Chem. 2024 Jul 25;20:1758-1766. doi: 10.3762/bjoc.20.154. eCollection 2024.
Piperazines and diazepines are examples of nitrogen heterocycles present in many marketed drugs highlighting their importance in the discovery of novel bioactive compounds. However, their synthesis often faces challenges, including complex functionalization and lengthy reaction sequences. Multicomponent reactions, notably the Ugi reaction, have emerged as powerful tools to address these hurdles. Here, we have demonstrated the possibility of using the combination of arylglyoxals and carboxylic acids tethered to nonprotected deactivated amines as a powerful strategy for the synthesis of complex fused heterocycles. The limited nucleophilic character of the amino group of the anthranilic acid, indole-2-carboxylic acid, pyrrole-2-carboxylic acid or -phenylglycine has allowed the use of these compounds in the Ugi reaction without triggering competitive reactions. The additional functional group present in the resulting Ugi adduct can be leveraged in different post-condensation strategies to easily generate multiple fused nitrogen heterocycles including benzodiazepinone and piperazinone cores.
哌嗪和二氮杂卓是许多市售药物中存在的氮杂环的例子,突出了它们在发现新型生物活性化合物中的重要性。然而,它们的合成常常面临挑战,包括复杂的官能团化和冗长的反应序列。多组分反应,特别是乌吉反应,已成为克服这些障碍的有力工具。在此,我们展示了将芳基乙二醛和羧酸与未保护的钝化胺相连的组合用作合成复杂稠合杂环的有力策略的可能性。邻氨基苯甲酸、吲哚 - 2 - 羧酸、吡咯 - 2 - 羧酸或苯甘氨酸的氨基的亲核性有限,使得这些化合物能够用于乌吉反应而不引发竞争性反应。所得乌吉加合物中存在的额外官能团可用于不同的缩合后策略,以轻松生成多种稠合氮杂环,包括苯并二氮杂卓酮和哌嗪酮核心。