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使用手性交联剂进行外消旋体和外消旋混合物印迹

Scalemic and racemic imprinting with a chiral crosslinker.

作者信息

Hebert Britney, Meador Danielle S, Spivak David A

机构信息

Department of Chemistry, Louisiana State University, Baton Rouge, LA 70803, USA.

Department of Chemistry, Louisiana State University, Baton Rouge, LA 70803, USA.

出版信息

Anal Chim Acta. 2015 Aug 26;890:157-64. doi: 10.1016/j.aca.2015.08.001. Epub 2015 Aug 8.

Abstract

The development of molecularly imprinted chiral stationary phases has traditionally been limited by the need for a chiral pure template. Paradoxically, availability of a chiral pure template largely defeats the purpose of developing a chiral stationary phase. To solve this paradox, imprinting of scalemic and racemic template mixtures was investigated using both chiral (N-α-bismethacryloyl-L-alanine) and achiral (N,O-bisacrylamide ethanolamine) crosslinkers. Imprinting of scalemic mixtures provided polymers capable of partial separation of Boc-tyrosine enantiomers with virtually the same results when using either the chiral or achiral crosslinker. However, the chiral crosslinker was required for chiral differentiation by the racemic imprinted polymers which were evaluated in both batch rebinding and chromatographic modes. Batch rebinding analysis revealed intersecting binding isotherms for the L- and D-Boc-tyrosine, indicating bias for the D or L enantiomer is concentration dependent. Partial chromatographic separation was achieved by the racemic imprinted polymers providing variable D or L bias in equal probability over multiple replicates of polymer synthesis. Correlation of enantiomer bias with the batch rebinding results and optimization of HPLC parameters are discussed.

摘要

传统上,分子印迹手性固定相的发展受到对手性纯模板需求的限制。矛盾的是,手性纯模板的可得性在很大程度上违背了开发手性固定相的目的。为了解决这一矛盾,使用手性(N-α-双甲基丙烯酰-L-丙氨酸)和非手性(N,O-双丙烯酰胺乙醇胺)交联剂研究了非对映体和外消旋模板混合物的印迹。非对映体混合物的印迹提供了能够部分分离Boc-酪氨酸对映体的聚合物,使用手性或非手性交联剂时结果几乎相同。然而,外消旋印迹聚合物在批量再结合和色谱模式下进行评估时,需要手性交联剂来实现手性区分。批量再结合分析显示L-和D-Boc-酪氨酸的结合等温线相交,表明对D或L对映体的偏向取决于浓度。外消旋印迹聚合物实现了部分色谱分离,在聚合物合成的多个重复中以相等的概率提供可变的D或L偏向。讨论了对映体偏向与批量再结合结果的相关性以及HPLC参数的优化。

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