An Efficient and Cost-Effective Synthesis of Pagoclone
Citations Over Time
Abstract
The compound (+)-2-(7-chloro-1,8-naphthyridin-2-yl)-3S-(5-methyl-2-oxohexyl)-1-isoindolinone (pagoclone) shows anxiolytic activity due to partial agonism of the benzodiazepine site of the GABAA receptor. We describe the development of an economical and practical process for a 100+ kg pilot plant production used to supply development needs. For the key reaction, a β-keto phosphonium salt was prepared by selectively reacting a primary α-bromo ketone with triphenylphosphine in the presence of a secondary α-bromo ketone. A novel Wittig reaction with a 1-isoindolinone was used to produce racemic pagoclone. The enantiomerically pure drug substance was prepared by hydrolyzing a γ-lactam and resolving the resulting enantiomeric carboxylic acids with (+)-ephedrine hemihydrate. An alternate resolution, involving chiral multicolumn chromatography (MCC) was also developed. The synthesis was completed by a racemization-free lactam formation to afford pagoclone.
Related Papers
- → Racemization of Amino Acids in Nature(1982)73 cited
- → [9] In Vivo racemization in mammalian proteins(1984)147 cited
- → Evaluation of Fe and Ru Pincer‐Type Complexes as Catalysts for the Racemization of Secondary Benzylic Alcohols(2016)15 cited
- → Racemization of Amines and Related Derivatives Leading to Their Dynamic Kinetic Resolution(2013)12 cited
- → Racemization in the Coupling Reaction, Pro-Val+Pro, with the Activated Ester Methods(1973)