Evdokimov Nikolai M, Kireev Artem S, Yakovenko Andrey A, Antipin Mikhail Yu, Magedov Igor V, Kornienko Alexander
Department of Organic Chemistry, Timiryazev Agriculture Academy, Moscow 127550, Russia.
J Org Chem. 2007 Apr 27;72(9):3443-53. doi: 10.1021/jo070114u. Epub 2007 Apr 5.
Heterocyclic privileged medicinal scaffolds involving pyridine, 1,4-dihydropyridine, chromeno[2,3-b]pyridine, and dihydro-1,4-dithiepine frameworks are prepared via a single-step multicomponent reaction of structurally diverse aldehydes with various thiols and malononitrile. Mechanistic studies of the synthetic pathway leading to pyridines reveal that 1,4-dihydropyridines undergo oxidation by the intermediate Knoevenagel adducts rather than by air oxygen. The use of o,o'-disubstituted aromatic aldehydes leads to the corresponding 1,4-dihydropyridines, whereas salicylic aldehydes result in chromeno[2,3-b]pyridines. Reactions of ethanedithiol as a thiol component produce dimeric pyridines with sterically unencumbered aldehydes, while o,o'-disubstituted aromatic aldehydes give dihydro-1,4-dithiepines. Thus, depending on the aldehyde and thiol types, diverse libraries of medicinally relevant compounds can be prepared by a simple one-step process involving no chromatography.
通过结构多样的醛与各种硫醇和丙二腈的一步多组分反应,制备了包含吡啶、1,4 - 二氢吡啶、色烯并[2,3 - b]吡啶和二氢 - 1,4 - 二硫杂环庚烷骨架的杂环优势药物支架。对生成吡啶的合成途径的机理研究表明,1,4 - 二氢吡啶是被中间的克脑文盖尔加合物氧化,而不是被空气中的氧气氧化。使用邻、邻'-二取代的芳香醛会生成相应的1,4 - 二氢吡啶,而水杨醛则生成色烯并[2,3 - b]吡啶。作为硫醇组分的乙二硫醇与空间位阻较小的醛反应生成二聚吡啶,而邻、邻'-二取代的芳香醛则生成二氢 - 1,4 - 二硫杂环庚烷。因此,根据醛和硫醇的类型,可以通过一个简单的一步法制备各种与药物相关的化合物库,且无需色谱法。