首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Low-molecular-weight chiral cation exchangers: Novel chiral stationary phases and their application for enantioseparation of chiral bases by nonaqueous capillary electrochromatography
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Low-molecular-weight chiral cation exchangers: Novel chiral stationary phases and their application for enantioseparation of chiral bases by nonaqueous capillary electrochromatography

机译:低分子量手性阳离子交换剂:新型手性固定相及其在非水毛细管电色谱法拆分手性碱中的应用

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Cation exchange type chiral stationary phases (CSPs) based on 3,5-dichlorobenzoyl amino acid and amino phosphonic acid derivatives as chiral selectors (SOs) and silica as chromatographic support were developed and applied to enantiomer separations of chiral bases by nonaqueous capillary electrochromatography (NA-CEC). As a rationale for efficient CSP development we adopted the combined use of the "reciprocity principle of chiral recognition" and nonaqueous ion-pair CE as screening assay. Thus, (S)-atenolol was employed as chiral counter-ion added to the BGE in CE and a series of N-derivatized amino acids and amino phosphonic acids were screened to derive reciprocally information on their chiral recognition abilities for atenolol enantiomers. Two SO candidates, namely N-(3,5-dichlorobenzoyl)-O-allyl-tyrosine and N-(4-allyloxy-3,5-dichlorobenzoyl)-1 -amino-3-methylbutane phosphonic acid that have been identified as potential SOs in the CE screening were, after immobilization on thiol-modified silica, evaluated in cation-exchange NA-CEC. The strong chiral cation exchanger with the free phosphonic acid group exhibited enhanced enantioselectivity compared to the weak chiral cation exchanger with the carboxylic acid group. A wide variety of chiral bases could be successfully resolved on the strong chiral cation exchanger with alpha-values up to 2.2 and efficiencies up to 375 000 m(-1) including beta-blockers and other amino alcohols, local anesthetics like etidocaine, antimalarial agents like mefloquine, Troger's base, phenothiazines like promethazine, and antihistaminics. The influence of several experimental parameters (electrolyte concentration, acid-base ratio and acetonitrile-methanol ratio) was evaluated*. [References: 73]
机译:基于3,5-二氯苯甲酰基氨基酸和氨基膦酸衍生物作为手性选择剂(SOs)和硅胶作为色谱载体的阳离子交换型手性固定相(CSP)的开发,并通过非水毛细管电色谱法(NA)用于手性碱的对映体分离-CEC)。作为高效CSP开发的基本原理,我们采用了“手性识别的互易性原理”和非水离子对CE的组合使用作为筛选方法。因此,(S)-阿替洛尔被用作添加到CE中BGE的手性抗衡离子,并筛选了一系列N-衍生化的氨基酸和氨基膦酸,以相互推导有关对阿替洛尔对映体的手性识别能力的信息。已确定潜在的两种SO候选物质,即N-(3,5-二氯苯甲酰基)-O-烯丙基酪氨酸和N-(4-烯丙氧基-3,5-二氯苯甲酰基)-1-氨基-3-甲基丁烷膦酸将CE筛选中的SOs固定在硫醇修饰的二氧化硅上后,在阳离子交换NA-CEC中进行评估。与具有羧酸基团的弱手性阳离子交换剂相比,具有游离膦酸基团的强手性阳离子交换剂表现出增强的对映选择性。强大的手性阳离子交换剂可以成功解决各种各样的手性碱,其α值高达2.2,效率高达375 000 m(-1),包括β受体阻滞剂和其他氨基醇,局麻药(如依替卡因),抗疟药如甲氟喹,特罗格碱,吩噻嗪如异丙嗪和抗组胺药。评估了几个实验参数(电解质浓度,酸碱比和乙腈-甲醇比)的影响*。 [参考:73]

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