化学
喹啉
组合化学
再结晶(地质)
二肽
立体化学
有机化学
肽
生物化学
生物
古生物学
作者
Carl A. Busacca,Xudong Wei,Nizar Haddad,Suresh Kapadia,Jon C. Lorenz,Anjan K. Saha,Richard J. Varsolona,T. Berkenbusch,Scot C. Campbell,Vittorio Farina,XuWu Feng,Nina C. Gonnella,Nelu Grinberg,Paul‐James Jones,Hee Won Lee,Zhibin Li,Oliver Niemeier,Wendelin Samstag,Max Sarvestani,Juergen Schroeder
标识
DOI:10.1002/ajoc.201200014
摘要
Abstract A concise synthetic route for large‐scale manufacture of the hepatitis C virus (HCV) protease inhibitor BI 201335 has been developed. A convergent synthetic design was achieved by using three advanced intermediates: a densely functionalized thiazole‐quinoline, a hydroxyproline‐containing dipeptide acid, and an optically pure vinylcyclopropane. Only three subsequent synthetic steps were then required for the final assembly of this complex target. The first step is a critical CO bond formation to join the heterocycle and the peptidic portion of the molecule, which was done by using a newly‐designed heterocyclic sulfone. The second step uses an inexpensive peptide coupling of the aminocyclopropane and ester saponification, then recrystallization completes the route. This economical and practical process is suitable for large scale production of BI 201335, requires no protecting groups or chromatography, and every isolated intermediate is a crystalline solid.
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