化学
吲哚
吲哚试验
催化作用
奥西多尔
戒指(化学)
组合化学
立体化学
药物化学
有机化学
作者
Nabin Parui,Tirtha Mandal,Sandip Maiti,Jyotirmayee Dash
标识
DOI:10.1002/chem.202401059
摘要
Abstract Cyclohepta[ b ]indoles, prevalent in natural products and pharmaceuticals, are conventionally accessed via metal or Lewis acid‐mediated cycloadditions with prefunctionalized substrates. Our study introduces an innovative sequential catalytic assembly for synthesizing cyclohepta[ b ]indoles from readily available isatin derivatives. The process involves three catalytic sequences: ring‐closing metathesis, catalytic hydrogenation, and acid‐catalyzed ring expansion. The RCM of 2,2‐dialkene‐3‐oxindoles, formed by butenyl Grignard addition to 3‐allyl‐3‐hydroxy‐2‐oxindoles, yields versatile spirocyclohexene‐3‐oxindole derivatives. These derivatives undergo further transformations, including dibromination, dihydroxylation, epoxidation, Wacker oxidation at the double bond. Hydrogenation of spirocyclohexene‐3‐oxindole yields spirocyclohexane‐3‐oxindoles. Their subsequent acid‐catalyzed ring expansion/aromatization, dependent on the acid catalyst, results in either cyclohepta[ b ]indoles or cyclohepta[ b ]indole‐indoline conjugates, adding a unique synthetic dimension. The utility of this methodology is exemplified through the synthesis of an A‐FABP inhibitor, showcasing its potential in pharmaceutical applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI