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Development of a concise, scalable synthesis of a CCR1 antagonist utilizing a continuous flow Curtius rearrangement

Authors :
Jon C. Lorenz
Laurence J. Nummy
Xudong Wei
Jason Brazzillo
Irungu K. Luvaga
Chris H. Senanayake
Zhulin Tan
Jinhua J. Song
Bikshandarkoil A. Narayanan
Kanwar Sidhu
Nathan K. Yee
Maurice A. Marsini
Frederic G. Buono
Jonathan T. Reeves
Heewon Lee
Yongda Zhang
Max Sarvestani
Bing-Shiou Yang
Ning Li
Frank Roschangar
J. C. Chung
Source :
Green Chemistry. 19:1454-1461
Publication Year :
2017
Publisher :
Royal Society of Chemistry (RSC), 2017.

Abstract

A convergent, robust, and concise synthesis of a developmental CCR1 antagonist is described using continuous flow technology. In the first approach, following an expeditious SNAr sequence for cyclopropane introduction, a safe, continuous flow Curtius rearrangement was developed for the synthesis of a p-methoxybenzyl (PMB) carbamate. Based on kinetic studies, a highly efficient and green process comprising three chemical transformations (azide formation, rearrangement, and isocyanate trapping) was developed with a relatively short residence time and high material throughput (0.8 kg h−1, complete E-factor = ∼9) and was successfully executed on 40 kg scale. Moreover, mechanistic studies enabled the execution of a semi-continuous, tandem Curtius rearrangement and acid–isocyanate coupling to directly afford the final drug candidate in a single, protecting group-free operation. The resulting API synthesis is further determined to be extremely green (RPG = 166%) relative to the industrial average for molecules of similar complexity.

Details

ISSN :
14639270 and 14639262
Volume :
19
Database :
OpenAIRE
Journal :
Green Chemistry
Accession number :
edsair.doi...........6c74c910632a66701a66405c352f852e
Full Text :
https://doi.org/10.1039/c6gc03123d