依西酞普兰
对映体
可扩展性
产量(工程)
过程(计算)
分辨率(逻辑)
化学
对映体过量
组合化学
工艺优化
原子经济
工艺工程
CLs上限
过程开发
计算机科学
工艺设计
二醇
反应条件
手性拆分
氢
制造工艺
下游加工
有机化学
作者
Peng Yang,Xiyong Li,Jianhua He,Cailang Lai,Yan Sheng,Yue Huang,Xianxin Li,Hailong Wang,Yu Wan
标识
DOI:10.1021/acs.oprd.5c00188
摘要
A straightforward, efficient, atom-economical, and scalable commercial manufacturing process was developed for the treatment of depression via commercial available starting materials. Citalopram, a selective serotonin reuptake inhibitor introduced in 1989, is a racemic mixture whose entire inhibitory activity resides in the S-(+)-enantiomer, also known as escitalopram. While the original six-step route suffered from sub-30% overall yield, inefficient diol resolution (<40%), nonrecyclable solvents, and problematic reaction byproduct management, our redesigned process achieves three critical advancements: (1) controlled impurity profiles, enhanced reaction efficiency (over 90% yield per step), streamlined postprocessing and recyclable solvents for preparation of racemic diol; (2) effective stereoinvertive cyclization strategy for converting R-diol byproducts into escitalopram via S N 2; (3) closed-loop resolution agent recovery and valorization of escitalopram enantiomeric byproduct. Safety-optimized scale-up enabled production of 446 kg batches with exceptional purity (>99.7%), enantiomeric excess (>99.8% ee), and 81.6% overall yield─representing 3.9-fold process intensification versus legacy methods. This sustainable platform demonstrates unprecedented atom utilization efficiency (>90%) while eliminating stereochemical waste, establishing new benchmarks for escitalopram manufacturing.
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