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超临界流体色谱中手性和非手性固定相的偶联:评价和改进保留预测。

Coupling of chiral and achiral stationary phases in supercritical fluid chromatography: Evaluating and improving retention prediction.

机构信息

Vrije Universiteit Brussel (VUB), Department of Analytical Chemistry, Applied Chemometrics and Molecular Modelling, Faculty of Medicine and Pharmacy, Laarbeeklaan 103, B-1090 Brussels, Belgium; Department of Analytical Chemistry, Faculty of Pharmacy in Hradec Králové, Charles University, Akademika Heyrovského 1203, CZ-500 05 Hradec Králové, Czech Republic.

Department of Analytical Chemistry, Faculty of Pharmacy in Hradec Králové, Charles University, Akademika Heyrovského 1203, CZ-500 05 Hradec Králové, Czech Republic.

出版信息

J Chromatogr A. 2022 Mar 29;1667:462883. doi: 10.1016/j.chroma.2022.462883. Epub 2022 Feb 6.

Abstract

Isomers and stereoisomers are always challenging to separate. Column coupling may provide improved chromatographic selectivity, necessary for the separation of the compounds with similar chemical and structural properties. The relatively low viscosity of supercritical fluids, used as mobile phases allows for the coupling of several columns in series in supercritical fluid chromatography (SFC), without exceeding the pressure limits of the system. The aim of this study is to propose reliable prediction of the retention behaviour of analytes on a coupled column system, based on a limited number of initial analyses. The chiral compounds atenolol, ephedrine, propranolol, mianserin, labetalol and nadolol, besides the diastereomers quinine and quinidine, and the structural isomers of aminophenol and aminocresol were used as model analytes. The retention behaviour of the analytes was determined on the individual chiral columns Lux Cellulose-1, Lux Cellulose-2, Lux Cellulose-3, Lux Cellulose-4, Lux Amylose-2 and the achiral columns Luna NH, Luna Silica, Synergi RP and FluoroSep RP. The mobile phase was composed of CO mixed with 20% (v/v) MeOH, which contained 0.1% (v/v) trifluoroacetic acid and 0.1% (v/v) isopropylamine. The retention factors of the analytes on coupled stationary phases were predicted, and subsequently compared to the experimentally obtained ones. Relative deviations of predicted and experimental retention factors were in range from 0.00% to 51.91%. Flow rate and back pressure of the screening conditions were adjusted to improve prediction precision on four column combinations, with varying success rates. The average relative deviations of retention factors were reduced to 2.84% - 6.59% by adjusting flow rate, and to 2.30% - 8.57% by adjusting back pressure. The most successful approach, flow rate adjustment, was then applied to select a column combination providing improved resolution of the structurally similar components of silymarin extract.

摘要

异构体和立体异构体总是难以分离。柱耦合可以提供改善的色谱选择性,这对于分离具有相似化学和结构性质的化合物是必要的。超临界流体作为流动相的相对低粘度允许在超临界流体色谱 (SFC) 中串联连接多个柱,而不会超过系统的压力限制。本研究的目的是基于有限数量的初始分析,提出可靠预测手性化合物在耦合柱系统上保留行为的方法。使用的模型分析物包括手性化合物阿替洛尔、麻黄碱、普萘洛尔、米氮平、拉贝洛尔和那多洛尔,以及奎宁和奎尼丁的非对映异构体,以及氨基酚和氨基间甲酚的结构异构体。分析物的保留行为在单个手性柱 Lux Cellulose-1、Lux Cellulose-2、Lux Cellulose-3、Lux Cellulose-4、Lux Amylose-2 和非手性柱 Luna NH、Luna Silica、Synergi RP 和 FluoroSep RP 上确定。流动相由 CO 与 20%(v/v)甲醇组成,其中含有 0.1%(v/v)三氟乙酸和 0.1%(v/v)异丙胺。预测了分析物在耦合固定相上的保留因子,随后将其与实验获得的值进行比较。预测和实验保留因子的相对偏差在 0.00%至 51.91%的范围内。筛选条件的流速和背压进行了调整,以提高四个柱组合的预测精度,成功率各不相同。通过调整流速,将保留因子的平均相对偏差降低至 2.84%至 6.59%,通过调整背压,将平均相对偏差降低至 2.30%至 8.57%。然后,成功应用流速调整方法来选择提供改善的水飞蓟素提取物结构相似成分分辨率的柱组合。

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