Ilisz István, Berkecz Róbert, Péter Antal
Department of Inorganic and Analytical Chemistry, University of Szeged, Dóm tér 7, H-6720 Szeged, Hungary.
J Chromatogr A. 2009 Mar 6;1216(10):1845-60. doi: 10.1016/j.chroma.2008.08.041. Epub 2008 Aug 15.
The development of methods for the separation of enantiomers has attracted great interest in the past 20 years, since it became evident that the potential biological or pharmacological applications are mostly restricted to one of the enantiomers. In the past decade, macrocyclic antibiotics have proved to be an exceptionally useful class of chiral selectors for the separation of enantiomers of biological and pharmacological importance by means of high-performance liquid chromatography (HPLC), thin-layer chromatography and electrophoresis. The glycopeptides avoparcin, teicoplanin, ristocetin A and vancomycin have been extensively used as chiral selectors in the form of chiral bonded phases in HPLC, and HPLC stationary phases based on these glycopeptides have been commercialized. In fact, the macrocyclic glycopeptides are to some extent complementary to one another: where partial enantioresolution is obtained with one glycopeptide, there is a high probability that baseline or better separation can be obtained with another. This review sets out to characterize the physicochemical properties of these macrocyclic glycopeptide antibiotics and, through their application, endeavors to demonstrate the mechanism of separation on macrocyclic glycopeptides. The sequence of elution of the stereoisomers and the relation to the absolute configuration are also discussed.
在过去20年里,对映体分离方法的发展引起了人们极大的兴趣,因为很明显,潜在的生物学或药理学应用大多局限于其中一种对映体。在过去十年中,大环抗生素已被证明是一类极为有用的手性选择剂,可通过高效液相色谱(HPLC)、薄层色谱和电泳来分离具有生物学和药理学重要性的对映体。糖肽类抗生素阿伏霉素、替考拉宁、瑞斯托菌素A和万古霉素已被广泛用作HPLC中手性键合相形式的手性选择剂,基于这些糖肽的HPLC固定相已实现商业化。事实上,大环糖肽在一定程度上是相互补充的:如果用一种糖肽能获得部分对映体拆分,那么用另一种糖肽很有可能实现基线分离或更好的分离。本综述旨在描述这些大环糖肽抗生素的物理化学性质,并通过它们的应用来阐明在大环糖肽上的分离机制。还讨论了立体异构体的洗脱顺序及其与绝对构型的关系。