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使用无水流动相通过替考拉宁和RN-β-环糊精手性固定相对手性氨基酸衍生物进行拆分的比较:提高分离度的因素。

Comparison of the chiral separation of amino-acid derivatives by a teicoplanin and RN-beta-CD CSPs using waterless mobile phases: Factors that enhance resolution.

作者信息

Chen Shushi, Ward Timothy

机构信息

Department of Applied Chemistry, National Chiayi University, Chiayi, Taiwan, ROC.

出版信息

Chirality. 2004 May 15;16(5):318-30. doi: 10.1002/chir.20035.

Abstract

A variety of compounds containing amines (i.e., amino acids, amino alcohols, etc.) were chemically derivatized with a variety of electrophilic tagging reagents to elucidate the chiral recognition sites on a teicoplanin-bonded chiral stationary phase (CSP) and on R-naphthylethylcarbamate-beta-cyclodextrin (RN-beta-CD)-bonded CSP. Solutes were separated under optimum chromatographic conditions on teicoplanin and RN-beta-CD CSPs for comparison using an acetonitrile-based mobile phase. It was noted that the size of the analyte or tagging reagent exerted a greater influence on compounds separated on teicoplanin than on RN-beta-CD when using the polar organic mode. This suggests that chiral recognition on teicoplanin CSP is more sensitive to size and indicates that the hydrophobic pocket of teicoplanin plays a significant role in chiral recognition in this mode. However, the type of functional groups had a greater impact than the size of analyte on separations obtained from RN-beta-CD phase in the polar-organic mode. Specifically, the pi-pi interaction was enhanced by derivatizing the aromatic ring of the tagging reagent with electron-withdrawing groups and thus altered the resolution substantially. For both phases, chiral recognition is most pronounced when the stereogenic center of the analyte is near the tagging moiety and surrounded by functional groups (e.g., carboxylic, etc.) which are favorable for hydrogen bonding.

摘要

使用多种亲电标记试剂对多种含胺化合物(即氨基酸、氨基醇等)进行化学衍生化,以阐明替考拉宁键合手性固定相(CSP)和R-萘基乙基氨基甲酸酯-β-环糊精(RN-β-CD)键合CSP上的手性识别位点。在最佳色谱条件下,使用基于乙腈的流动相,在替考拉宁和RN-β-CD CSP上分离溶质以进行比较。值得注意的是,在使用极性有机模式时,分析物或标记试剂的大小对在替考拉宁上分离的化合物的影响比对RN-β-CD上分离的化合物的影响更大。这表明替考拉宁CSP上的手性识别对大小更敏感,表明替考拉宁的疏水口袋在这种模式下的手性识别中起重要作用。然而,在极性有机模式下,官能团的类型对从RN-β-CD相获得的分离的影响比对分析物大小的影响更大。具体而言,通过用吸电子基团衍生化标记试剂的芳环来增强π-π相互作用,从而显著改变分离度。对于这两种固定相,当分析物的立体中心靠近标记部分并被有利于氢键形成的官能团(例如羧基等)包围时,手性识别最为明显

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