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全自动多柱筛选工作流程在超高压亲水作用色谱中用于流畅的方法开发的极性分析物。

Automated multicolumn screening workflow in ultra-high pressure hydrophilic interaction chromatography for streamlined method development of polar analytes.

机构信息

Analytical Research and Development, MRL, Merck & Co., Inc., 126 E. Lincoln Avenue, Rahway, NJ 07065, United States.

Analytical Research and Development, MRL, Merck & Co., Inc., 126 E. Lincoln Avenue, Rahway, NJ 07065, United States.

出版信息

J Chromatogr A. 2024 Sep 27;1733:465266. doi: 10.1016/j.chroma.2024.465266. Epub 2024 Aug 14.

DOI:10.1016/j.chroma.2024.465266
PMID:39163703
Abstract

The pharmaceutical industry is rapidly advancing toward new drug modalities, necessitating the development of advanced analytical strategies for effective, meaningful, and reliable assays. Hydrophilic Interaction Chromatography (HILIC) is a powerful technique for the analysis of polar analytes. Despite being a well-established technique, HILIC method development can be laborious owing to the multiple factors that affect the separation mechanism, such as the selection of stationary phase chemistry, mobile phase eluents, and optimization of column equilibration time. Herein, we introduce a new automated multicolumn and multi-eluent screening workflow that streamlines the development of new HILIC assays, circumventing the existing tedious 'hit-or-miss' approach. A total of 12 complementary columns packed with sub-2 µm fully porous and 2.7 µm superficially porous particles operated on readily available ultra-high pressure liquid chromatography (UHPLC) instrumentation across a diverse set of commercially available polar stationary phases were investigated. Different mobile phases with pH ranging from pH 3 to 9 were evaluated using different organic modifiers. The gradient and column re-equilibration were judiciously set to ensure a reliable assay screening framework that indicates promising conditions for subsequent method optimization to achieve resolution of challenging mixtures. This UHPLC screening system is coupled with a diode array and charged aerosol detectors (DAD, CAD and mass spectrometry) to ensure versatile detection for a variety of compounds. This fast-screening platform lays the foundation for a convenient generic workflow, accelerating the pace of HILIC method development and transfer across both academic and industrial sectors.

摘要

制药行业正在迅速向新的药物模式推进,这就需要开发先进的分析策略,以实现有效、有意义和可靠的检测。亲水作用色谱(HILIC)是一种分析极性分析物的强大技术。尽管 HILIC 是一种成熟的技术,但由于影响分离机制的多个因素,如固定相化学、流动相洗脱剂的选择以及柱平衡时间的优化,HILIC 方法的开发可能会很繁琐。在此,我们引入了一种新的自动化多柱和多洗脱剂筛选工作流程,简化了新 HILIC 分析方法的开发,避免了现有的繁琐的“碰运气”方法。总共使用了 12 根填充有亚 2 µm 全多孔和 2.7 µm 表面多孔颗粒的互补柱,在各种商业上可获得的极性固定相上在易于获得的超高压液相色谱(UHPLC)仪器上进行了操作。使用不同的有机改性剂评估了 pH 值范围从 3 到 9 的不同流动相。梯度和柱再平衡被谨慎设置,以确保可靠的检测筛选框架,该框架指示出有希望的条件,可随后进行方法优化,以实现具有挑战性的混合物的分离。该 UHPLC 筛选系统与二极管阵列和带电气溶胶检测器(DAD、CAD 和质谱)耦合,以确保对各种化合物进行多种检测。这个快速筛选平台为方便的通用工作流程奠定了基础,加快了 HILIC 方法在学术和工业领域的开发和转移的步伐。

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