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流动相组成对基于多糖固定相的药学相关化合物对映体分离的影响。

The effect of mobile phase composition in the enantioseparation of pharmaceutically relevant compounds with polysaccharide-based stationary phases.

作者信息

Sardella Roccaldo, Ianni Federica, Lisanti Antonella, Marinozzi Maura, Scorzoni Stefania, Natalini Benedetto

机构信息

Dipartimento di Chimica e Tecnologia del Farmaco, Via del Liceo 1, 06123, Perugia, Italy.

出版信息

Biomed Chromatogr. 2014 Jan;28(1):159-67. doi: 10.1002/bmc.3015. Epub 2013 Aug 15.

DOI:10.1002/bmc.3015
PMID:23946155
Abstract

Mobile phase variables have a deep influence on the chromatographic behavior with polysaccharide-based chiral stationary phases. Basic additives are generally used to minimize peak broadening arising from unwanted interactions between polar solutes and underivatized silanols. However, basic additives can improve enantioselectivity through disruption of hydrogen bonds and modification of the polymer morphology. Acidic additives are incorporated into the mobile phase during the analysis of acidic compounds as efficiency enhancers. Acidic additives can also improve enantioselectivity by minimizing within the chiral recognition site nonenantioselective retention. Peak shape without acidic additive in the eluent could be severely distorted during the analysis of salified compounds. Concentration and type of alcohol modifier can have an effect on the morphology of the polymer. The different winding of the chiral selector, caused by alcohol modifiers of different size/shape, ultimately results in different stereo environment of the chiral cavities in the polymer chain. Trace amounts of water in normal-phase eluents can affect retention time, tailing, and resolution. Deliberate addition of water to the eluent can improve peak resolution and save analysis time and solvent needs. Immobilized-type polysaccharide-derived chiral stationary phases offer new selectivity profiles and often improved enantioselectivity.

摘要

流动相变量对基于多糖的手性固定相的色谱行为有深远影响。通常使用碱性添加剂来最小化极性溶质与未衍生化硅醇之间不必要的相互作用所导致的峰展宽。然而,碱性添加剂可通过破坏氢键和改变聚合物形态来提高对映体选择性。在分析酸性化合物时,将酸性添加剂作为效率增强剂加入流动相。酸性添加剂还可通过最小化手性识别位点内的非对映体选择性保留来提高对映体选择性。在分析成盐化合物时,洗脱液中没有酸性添加剂时峰形可能会严重扭曲。醇改性剂的浓度和类型会对聚合物的形态产生影响。不同尺寸/形状的醇改性剂导致手性选择剂的不同缠绕,最终导致聚合物链中手性腔的立体环境不同。正相洗脱液中的痕量水会影响保留时间、拖尾和分离度。有意向洗脱液中加水可提高峰分离度,并节省分析时间和溶剂用量。固定化型多糖衍生的手性固定相提供了新的选择性特征,且通常具有更高的对映体选择性。

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