N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, 47 Leninsky prosp., 119991 Moscow, Russian Federation.
Org Biomol Chem. 2019 Apr 10;17(15):3670-3708. doi: 10.1039/c8ob03034k.
The prevalence of nitrogen containing heterocycles in natural products and pharmaceuticals is a doubtless fact. In this review, recent applications of a stereoselective aza-Michael reaction as an efficient tool for the asymmetric synthesis of naturally occurring nitrogen-containing heterocyclic scaffolds and their usefulness to pharmacology are reviewed and summarized. The available data are for the first time classified according to types of heterocyclic products and subdivided in accordance with synthetic methodologies used as key stereocontrolling steps (diastereoselective or enantioselective reactions, single bond-forming or cascade reactions, etc.). This classification is convenient for organic chemists and for researchers working in the areas of natural product synthesis and medicinal chemistry. Specific attention is paid to organocatalytic asymmetric versions of the aza-Michael reaction developed over the past decade.
氮杂环在天然产物和药物中的普遍性是一个毋庸置疑的事实。在这篇综述中,综述了立体选择性氮杂迈克尔加成反应作为一种有效工具,用于不对称合成天然存在的含氮杂环骨架的最新应用,以及它们在药理学中的用途。首次根据杂环产物的类型对现有数据进行分类,并根据用作关键立体控制步骤的合成方法进行细分(非对映选择性或对映选择性反应、单键形成或级联反应等)。这种分类方法方便了有机化学家以及从事天然产物合成和药物化学研究的研究人员。特别关注了过去十年中发展起来的氮杂迈克尔加成反应的有机催化不对称版本。