Analytical Research and Development, MRL, Merck & Co., Inc., Rahway, New Jersey 07065, United States.
Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, United States.
Anal Chem. 2021 Aug 24;93(33):11532-11539. doi: 10.1021/acs.analchem.1c01970. Epub 2021 Aug 10.
Continued adoption of two-dimensional liquid chromatography (2D-LC) in industrial laboratories will depend on the development of approaches to make method development for 2D-LC more systematic, less tedious, and less reliant on user expertise. In this paper, we build on previous efforts in these directions by describing the use of multifactorial modeling software that can help streamline and simplify the method development process for 2D-LC. Specifically, we have focused on building retention models for second dimension (D) separations involving variables including gradient time, temperature, organic modifier blending, and buffer concentration using LC simulator (ACD/Labs) software. Multifactorial retention modeling outcomes are illustrated as resolution map planes or cubes that enable straightforward location of D conditions that maximize resolution while minimizing analysis time. We also illustrate the practicality of this approach by identifying conditions that yield baseline separation of all compounds co-eluting from a first dimension (D) separation using a single combination of D stationary phase and elution conditions. The multifactorial retention models were found to be very accurate for both the D and D separations, with differences between experimental and simulated retention times of less than 0.5%. Pharmaceutical applications of this approach for multiple heartcutting 2D-LC were demonstrated using IEC-IEC or achiral RPLC-chiral RPLC for 2D separations of multicomponent mixtures. The framework outlined here should help make 2D-LC method development more systematic and streamline development and optimization for a variety of 2D-LC applications in both industry and academia.
二维液相色谱(2D-LC)在工业实验室中的持续采用将取决于开发方法,使 2D-LC 的方法开发更系统、不繁琐且不依赖于用户专业知识。在本文中,我们通过描述使用多因素建模软件来进一步推进这些方向的工作,该软件可以帮助简化和简化 2D-LC 的方法开发过程。具体来说,我们专注于使用 LC 模拟器(ACD/Labs)软件构建涉及梯度时间、温度、有机改性剂混合和缓冲液浓度等变量的第二维(D)分离的保留模型。多因素保留建模结果以分辨率图平面或立方图的形式呈现,可轻松定位最大化分辨率同时最小化分析时间的 D 条件。我们还通过确定使用单一 D 固定相和洗脱条件即可实现所有共洗脱化合物基线分离的条件来展示这种方法的实用性。多因素保留模型对 D 和 D 分离都非常准确,实验和模拟保留时间之间的差异小于 0.5%。通过使用 IEC-IEC 或非手性 RPLC-手性 RPLC 对多组分混合物进行 2D 分离,展示了该方法在多步切割 2D-LC 中的药物应用。这里概述的框架应有助于使 2D-LC 方法开发更系统,并简化各种工业和学术界 2D-LC 应用的开发和优化。