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反相模式下手性固定相色谱保留模型的适用性:以依泽替米贝及其杂质为例。

The Applicability of Chromatographic Retention Modeling on Chiral Stationary Phases in Reverse-Phase Mode: A Case Study for Ezetimibe and Its Impurities.

机构信息

Department of Physical Chemistry, Faculty of Pharmacy, George Emil Palade University of Medicine, Pharmacy, Science, and Technology of Targu Mures, 540142 Targu Mures, Romania.

Gedeon Richter Romania S.A., Analytical Development Department, 540306 Targu Mures, Romania.

出版信息

Int J Mol Sci. 2023 Nov 8;24(22):16097. doi: 10.3390/ijms242216097.

Abstract

Mechanistic modeling is useful for predicting and modulating selectivity even in early chromatographic method development. This approach is also in accordance with current analytical quality using design principles and is highly welcomed by the authorities. The aim of this study was to investigate the separation behavior of two different types of chiral stationary phases (CSPs) for the separation of ezetimibe and its related substances using the mechanistic retention modeling approach offered by the Drylab software (version 4.5) package. Based on the obtained results, both CSPs presented with chemoselectivity towards the impurities of ezetimibe. The cyclodextrin-based CSP displayed a higher separation capacity and was able to separate seven related substances from the active pharmaceutical ingredient, while the cellulose-based column enabled the baseline resolution of six impurities from ezetimibe. Generally, the accuracy of predicted retention times was lower for the polysaccharide CSP, which could indicate the presence of additional secondary interactions between the analytes and the CSP. It was also demonstrated that the combination of mechanistic modeling and an experimental design approach can be applied to method development on CSPs in reverse-phase mode. The applicability of the methods was tested on spiked artificial placebo samples, while intraday and long-term (2 years) method repeatability was also challenged through comparing the obtained retention times and resolution values. The results indicated the excellent robustness of the selected setpoints. Overall, our findings indicate that the chiral columns could offer orthogonal selectivity to traditional reverse-phase columns for the separation of structurally similar compounds.

摘要

机制建模可用于预测和调节选择性,即使在早期的色谱方法开发中也是如此。这种方法也符合当前分析质量的设计原则,受到了相关部门的高度欢迎。本研究旨在使用 Drylab 软件(版本 4.5)包提供的机制保留建模方法研究两种不同类型的手性固定相(CSP)对依泽替米贝及其相关物质分离的分离行为。根据获得的结果,两种 CSP 都对依泽替米贝的杂质表现出化学选择性。基于环糊精的 CSP 具有更高的分离能力,能够将七种相关物质与活性药物成分分离,而基于纤维素的柱子能够实现依泽替米贝中六种杂质的基线分离。通常,多糖 CSP 的预测保留时间的准确性较低,这可能表明分析物与 CSP 之间存在额外的次要相互作用。还证明了机制建模与实验设计方法的结合可应用于反相模式下的 CSP 方法开发。该方法的适用性在加标人工安慰剂样品上进行了测试,同时通过比较获得的保留时间和分辨率值来挑战日内和长期(2 年)方法重复性。结果表明所选设定点具有出色的稳健性。总体而言,我们的研究结果表明,手性柱可以为分离结构相似的化合物提供与传统反相柱正交的选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21d0/10671152/d07cfa66989e/ijms-24-16097-g001.jpg

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