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两性离子手性固定相在高效液相色谱法分离手性酸、碱和氨基酸时对对映体选择性的协同效应。

Synergistic effects on enantioselectivity of zwitterionic chiral stationary phases for separations of chiral acids, bases, and amino acids by HPLC.

作者信息

Hoffmann Christian V, Pell Reinhard, Lämmerhofer Michael, Lindner Wolfgang

机构信息

Christian Doppler Laboratory for Molecular Recognition Materials, Department of Analytical Chemistry & Food Chemistry, University of Vienna, Währinger Strasse 38, A-1090 Vienna, Austria.

出版信息

Anal Chem. 2008 Nov 15;80(22):8780-9. doi: 10.1021/ac801384f. Epub 2008 Oct 15.

Abstract

In an attempt to overcome the limited applicability scope of earlier proposed Cinchona alkaloid-based chiral weak anion exchangers (WAX) and recently reported aminosulfonic acid-based chiral strong cation exchangers (SCX), which are conceptionally restricted to oppositely charged solutes, their individual chiral selector (SO) subunits have been fused in a combinatorial synthesis approach into single, now zwitterionic, chiral SO motifs. The corresponding zwitterionic ion-exchange-type chiral stationary phases (CSPs) in fact combined the applicability spectra of the parent chiral ion exchangers allowing for enantioseparations of chiral acids and amine-type solutes in liquid chromatography using polar organic mode with largely rivaling separation factors as compared to the parent WAX and SCX CSPs. Furthermore, the application spectrum could be remarkably expanded to various zwitterionic analytes such as alpha- and beta-amino acids and peptides. A set of structurally related yet different CSPs consisting of either a quinine or quinidine alkaloid moiety as anion-exchange subunit and various chiral or achiral amino acids as cation-exchange subunits enabled us to derive structure-enantioselectivity relationships, which clearly provided strong unequivocal evidence for synergistic effects of the two oppositely charged ion-exchange subunits being involved in molecular recognition of zwitterionic analytes by zwitterionic SOs driven by double ionic coordination.

摘要

早期提出的基于金鸡纳生物碱的手性弱阴离子交换剂(WAX)以及最近报道的基于氨基磺酸的手性强阳离子交换剂(SCX),其适用范围有限,从概念上讲仅限于带相反电荷的溶质。为了克服这一问题,通过组合合成方法将它们各自的手性选择剂(SO)亚基融合成单一的两性离子手性SO基序。相应的两性离子离子交换型手性固定相(CSP)实际上结合了母体手性离子交换剂的适用范围,能够在液相色谱中使用极性有机模式对手性酸和胺类溶质进行对映体分离,与母体WAX和SCX CSP相比,分离因子在很大程度上相互竞争。此外,应用范围可以显著扩展到各种两性离子分析物,如α-和β-氨基酸以及肽。一组结构相关但不同的CSP由作为阴离子交换亚基的奎宁或奎尼丁生物碱部分以及作为阳离子交换亚基的各种手性或非手性氨基酸组成,这使我们能够推导结构-对映选择性关系,这清楚地提供了强有力的明确证据,证明在双离子配位驱动下,两个带相反电荷的离子交换亚基在两性离子SO对两性离子分析物的分子识别中具有协同作用。

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