De Risi Carmela, Pollini Gian Piero, Zanirato Vinicio
Dipartimento di Scienze Chimiche e Farmaceutiche, Università degli Studi di Ferrara , Via Fossato di Mortara 17, 44121 Ferrara, Italy.
Istituto Universitario di Studi Superiori "IUSS-Ferrara 1391", Via delle Scienze 41/b, 44121 Ferrara, Italy.
Chem Rev. 2016 Mar 9;116(5):3241-305. doi: 10.1021/acs.chemrev.5b00443. Epub 2016 Feb 16.
The α-ketoamide motif is widely found in many natural products and drug candidates with relevant biological activities. Furthermore, α-ketoamides are attractive candidates to synthetic chemists due to the ability of the motif to access a wide range of functional group transformations, including multiple bond-forming processes. For these reasons, a vast array of synthetic procedures for the preparation of α-ketoamides have been developed over the past decades, and the search for expeditious and efficient protocols continues unabated. The aim of this review is to give an overview of the diverse methodologies that have emerged since the 1990s up to the present. The different synthetic routes have been grouped according to the way the α-ketoamide moiety has been created. Thus, syntheses of α-ketoamides proceeding via C(2)-oxidation of amide starting compounds are detailed, as are amidation approaches installing the α-ketoamide residue through C(1)-N bond formation. Also discussed are the methodologies centered on C(1)-C(2) σ-bond construction and C(2)-R/Ar bond-forming processes. Finally, the literature regarding the synthesis of α-ketoamide compounds by palladium-catalyzed double-carbonylative amination reactions is discussed.
α-酮酰胺基序广泛存在于许多具有相关生物活性的天然产物和候选药物中。此外,α-酮酰胺对合成化学家具有吸引力,因为该基序能够实现广泛的官能团转化,包括多种成键过程。由于这些原因,在过去几十年中已经开发了大量制备α-酮酰胺的合成方法,并且对快速高效方法的探索仍在继续。本综述的目的是概述自20世纪90年代至今出现的各种方法。不同的合成路线已根据α-酮酰胺部分的构建方式进行了分类。因此,详细介绍了通过酰胺起始化合物的C(2)氧化进行的α-酮酰胺合成,以及通过C(1)-N键形成安装α-酮酰胺残基的酰胺化方法。还讨论了以C(1)-C(2) σ键构建和C(2)-R/Ar键形成过程为中心的方法。最后,讨论了关于通过钯催化的双羰基胺化反应合成α-酮酰胺化合物的文献。