Analytical Research and Development, MRL, Merck & Co., Inc., Rahway, New Jersey 07065, United States.
Department of Chemistry, Gustavus Adolphus College, Saint Peter, Minnesota 56082, United States.
Anal Chem. 2021 Jan 19;93(2):964-972. doi: 10.1021/acs.analchem.0c03680. Epub 2020 Dec 10.
Recent developments in two-dimensional liquid chromatography (2D-LC) now make separation and analysis of very complex mixtures achievable. Despite being such a powerful chromatographic tool, current 2D-LC technology requires a series of arduous method development activities poorly suited for a fast-paced industrial environment. Recent introductions of new technologies including active solvent modulation and a support for multicolumn 2D-LC are helping to overcome this stigma. However, many chromatography practitioners believe that the lack of a systematic way to effectively optimize 2D-LC separations is a missing link in securing the viability of 2D-LC as a mainstay for industrial applications. In this work, a computer-assisted modeling approach that dramatically simplifies both offline and online 2D-LC method developments is introduced. Our methodology is based on mapping the separation landscape of pharmaceutically relevant mixtures across both first () and second () dimensions using LC Simulator (ACD/Labs) software. Retention models for and conditions were built using a minimal number of multifactorial modeling experiments (2 × 2 or 3 × 3 parameters: gradient slope, column temperature, and different column and mobile phase combinations). The approach was first applied to online 2D-LC analysis involving achiral and chiral separations of complex mixtures of enantiomeric species. In these experiments, the retention models proved to be quite accurate for both the and separations, with retention time differences between experiments and simulations of less than 3.5%. This software-based concept was also demonstrated for offline 2D-LC purification of drug substances.
二维液相色谱(2D-LC)的最新发展使得对非常复杂混合物的分离和分析成为可能。尽管 2D-LC 是一种非常强大的色谱工具,但目前的 2D-LC 技术需要一系列艰苦的方法开发活动,而这些活动不适合快节奏的工业环境。最近推出的新技术,包括主动溶剂调制和对多柱 2D-LC 的支持,有助于克服这一障碍。然而,许多色谱从业者认为,缺乏一种系统的方法来有效地优化 2D-LC 分离是确保 2D-LC 作为工业应用主要手段的可行性的缺失环节。在这项工作中,引入了一种计算机辅助建模方法,该方法极大地简化了离线和在线 2D-LC 方法的开发。我们的方法基于使用 LC Simulator(ACD/Labs)软件在第一维和第二维上绘制药物相关混合物的分离景观。使用最小数量的多因素建模实验(2×2 或 3×3 参数:梯度斜率、柱温以及不同的柱和流动相组合)构建 和 条件下的保留模型。该方法首先应用于在线 2D-LC 分析,涉及复杂对映异构体混合物的手性和非手性分离。在这些实验中,保留模型对于 和 分离都非常准确,实验和模拟之间的保留时间差异小于 3.5%。这种基于软件的概念也被证明适用于药物物质的离线 2D-LC 纯化。