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解析两性离子固定相上亲水作用色谱中缓冲盐浓度的影响

Deconvoluting the effects of buffer salt concentration in hydrophilic interaction chromatography on a zwitterionic stationary phase.

作者信息

West Caroline, Auroux Emeline

机构信息

Univ Orleans, CNRS, Institut de Chimie Organique et Analytique (ICOA), UMR 7311, B.P. 6759, rue de Chartres, F-45067 Orléans Cedex 2, France.

Univ Orleans, CNRS, Institut de Chimie Organique et Analytique (ICOA), UMR 7311, B.P. 6759, rue de Chartres, F-45067 Orléans Cedex 2, France.

出版信息

J Chromatogr A. 2016 Aug 26;1461:92-7. doi: 10.1016/j.chroma.2016.07.059. Epub 2016 Jul 25.

Abstract

Quantitative structure-retention relationships (QSRRs) furnish a detailed and reliable description of the role and extent of different molecular interactions that can be established between the analytes and the chromatographic system. Among QSRRs, the solvation parameter model using Abraham descriptors has gained acceptance as a general tool to explore the factors affecting retention in chromatographic systems. We have previously shown how a modified version of the solvation parameter model, with two extra terms to take account of interactions occurring with ionic and ionizable species (with positive and/or negative charges), could be applied to the characterization of hydrophilic interaction chromatographic (HILIC) systems. In the present study, we will show how this methodology can be used to evaluate the effects of increasing buffer salt concentration on retention and separation in a HILIC system. A commercial stationary phase possessing a sulfobetaine zwitterionic bonded ligand (Nucleodur HILIC) was used with a mobile phase composed of 80% acetonitrile and 20% pwwH4 ammonium acetate buffer, with aqueous buffer concentrations varying from 10 to 100mM, resulting in overall concentrations ranging from 2 to 20mM in the mobile phase. Retention factors were measured for a selection of 76 probe analytes. The chosen compounds are small molecules presenting a wide diversity of molecular structures and are relevant to biomedical and pharmaceutical applications. The QSRR models obtained allow for a rationalization of the interactions contributing to retention and separation in the HILIC system considered and shed some light on the effect of varying buffer salt concentration, namely the progressive transition from ion-exchange and electrostatic-repulsion mechanisms to hydrophilic partitioning.

摘要

定量结构-保留关系(QSRRs)详细且可靠地描述了分析物与色谱系统之间可建立的不同分子相互作用的作用和程度。在QSRRs中,使用亚伯拉罕描述符的溶剂化参数模型已被公认为是探索影响色谱系统中保留因素的通用工具。我们之前已经展示了溶剂化参数模型的一个修改版本,该版本带有两个额外的项以考虑与离子和可电离物种(带有正电荷和/或负电荷)发生的相互作用,如何应用于亲水相互作用色谱(HILIC)系统的表征。在本研究中,我们将展示如何使用这种方法来评估增加缓冲盐浓度对HILIC系统中保留和分离的影响。使用具有磺基甜菜碱两性离子键合配体的商业固定相(Nucleodur HILIC),流动相由80%乙腈和20%的乙酸铵缓冲液组成,水相缓冲液浓度从10到100mM不等,导致流动相中的总浓度范围为2到20mM。对76种探针分析物进行了保留因子测量。所选化合物为小分子,呈现出广泛多样的分子结构,与生物医学和制药应用相关。所获得的QSRR模型有助于合理说明在所考虑的HILIC系统中对保留和分离有贡献的相互作用,并揭示了缓冲盐浓度变化的影响,即从离子交换和静电排斥机制到亲水分配的逐步转变。

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