Ilisz István, Orosz Tímea, Péter Antal
Institute of Pharmaceutical Analysis, University of Szeged, Szeged, Hungary.
Institue of Pharmaceutical Analysis, University of Szeged, Szeged, Hungary.
Methods Mol Biol. 2019;1985:201-237. doi: 10.1007/978-1-4939-9438-0_12.
Since their introduction by Daniel W. Armstrong in 1994, antibiotic-based chiral stationary phases have proven their applicability for the chiral resolution of various types of racemates. The unique structure of macrocyclic glycopeptides and their large variety of interactive sites (e.g., hydrophobic pockets, hydroxy, amino and carboxyl groups, halogen atoms, aromatic moieties) are the reasons for their wide-ranging selectivity. The commercially available Chirobiotic™ phases, which display complementary characteristics, are capable of separating a broad variety of enantiomeric compounds with good efficiency, good column loadability, high reproducibility, and long-term stability. These are the major reasons for the frequent use of macrocyclic antibiotic-based stationary phases in HPLC enantioseparations.This overview chapter provides a brief summary of general aspects of antibiotic-based chiral stationary phases including their preparation and their application to direct enantioseparations of various racemates focusing on the literature published since 2004.
自1994年丹尼尔·W·阿姆斯特朗引入以来,基于抗生素的手性固定相已证明其在各种外消旋体的手性拆分中的适用性。大环糖肽的独特结构及其大量的相互作用位点(如疏水口袋、羟基、氨基和羧基、卤素原子、芳香部分)是其广泛选择性的原因。具有互补特性的市售Chirobiotic™固定相能够高效、良好的柱负载能力、高重现性和长期稳定性地分离多种对映体化合物。这些是基于大环抗生素的固定相在HPLC对映体分离中频繁使用的主要原因。本章概述简要总结了基于抗生素的手性固定相的一般方面,包括其制备及其在各种外消旋体直接对映体分离中的应用,重点关注2004年以来发表的文献。