Francotte Eric R
FrancotteConsulting, Orisstrasse 4, CH-4412 Nuglar (Formerly Ciba-Geigy, Novartis);, Email:
Chimia (Aarau). 2017 Aug 9;71(7):430-450. doi: 10.2533/chimia.2017.430.
From the beginning of the 1980s, the life science industry increasingly recognized the importance of chirality in biological interaction processes, but the methods for preparing optically pure drugs were still limited. Most of the syntheses of chiral compounds were performed starting from optically active building blocks (chiral pool), mainly from natural sources, or by resolution of the enantiomers via formation of diastereomers. In this context, there was a growing interest for enantioselective processes, such as synthetic methodologies and separation techniques for accessing optically pure substances in an effective manner. Among the separation approaches, enantioselective chromatography looked very promising and a project aiming to explore this option was started in the Central Research Laboratories of former Ciba-Geigy. This article reviews the story of this development which culminated in the discovery of highly efficient polysaccharide-based chiral stationary phases which have now become the gold standard in the world of enantioselective chromatography. It shows also how the technique of enantioselective chromatography has evolved from an analytical tool to a practical preparative technology, up to production scale.
从20世纪80年代初开始,生命科学行业越来越认识到手性在生物相互作用过程中的重要性,但制备光学纯药物的方法仍然有限。大多数手性化合物的合成是从光学活性的起始原料(手性池)开始的,主要来自天然来源,或者是通过形成非对映异构体来拆分对映体。在这种背景下,人们对 enantioselective 过程的兴趣与日俱增,比如以有效方式获取光学纯物质的合成方法和分离技术。在各种分离方法中,对映体选择性色谱看起来很有前景,一个旨在探索这一选项的项目在前汽巴 - 嘉基公司的中央研究实验室启动。本文回顾了这一发展历程,其最终成果是发现了高效的基于多糖的手性固定相,这些固定相现已成为对映体选择性色谱领域的金标准。它还展示了对映体选择性色谱技术是如何从一种分析工具发展成为一种实用的制备技术,直至达到生产规模的。