磷酸
组合化学
产量(工程)
化学
可扩展性
序列(生物学)
分辨率(逻辑)
过程开发
氨基甲酸酯
过程(计算)
有机化学
手性拆分
超临界流体
全合成
比例(比率)
立体异构
超临界流体色谱法
钥匙(锁)
作者
Caroline A. Blakemore,Adam R. Brown,Todd W. Butler,Christopher W. am Ende,Nasir Khan,Sarai Lara-Boykin,Bryan Li,Guochun Ma,Javier Magano,Subham Mahapatra,Peter Morse,Giselle P. Reyes,Colin R. Rose,Neal W. Sach,Liam S. Sharninghausen,Jared Van Haitsma,Pengzhi Wang,Daniel W. Widlicka,Zebediah C. Girvin
标识
DOI:10.1021/acs.oprd.5c00263
摘要
The discovery and process development for the synthesis of diastereopure sultam (1), a key chiral intermediate in route to a clinical candidate, are disclosed. Continuous route development to access (1) was required to satisfy both time and dynamic material needs during successive campaigns. Three distinct methods were developed to obtain diastereopure material. The first-generation process invoked time-intensive supercritical fluid chromatography (SFC) to access the diastereopure (2). Subsequent route development enabled a scalable, time-effective classical resolution approach that provided >20 kg of (1). Lastly, a Ruthenium-catalyzed diastereoselective hydrogenation approach was demonstrated on a hundred-gram scale and then coupled to the resolution technology to access (1), both reducing step count and improving overall yield relative to the resolution approach.
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