Department of Pharmaceutical and Therapeutic Chemistry, Faculty of Pharmacy, University of Medicine, Pharmacy, Science and Technology "George Emil Palade", 540142 Târgu Mureș, Romania.
Department of Chemistry "U. Schiff", University of Florence, 50019 Florence, Italy.
Molecules. 2021 Aug 2;26(15):4681. doi: 10.3390/molecules26154681.
Chirality is one of the major issues in pharmaceutical research and industry. Capillary electrophoresis (CE) is an interesting alternative to the more frequently used chromatographic techniques in the enantioseparation of pharmaceuticals, and is used for the determination of enantiomeric ratio, enantiomeric purity, and in pharmacokinetic studies. Traditionally, optimization of CE methods is performed using a univariate one factor at a time (OFAT) approach; however, this strategy does not allow for the evaluation of interactions between experimental factors, which may result in ineffective method development and optimization. In the last two decades, Design of Experiments (DoE) has been frequently employed to better understand the multidimensional effects and interactions of the input factors on the output responses of analytical CE methods. DoE can be divided into two types: screening and optimization designs. Furthermore, using Quality by Design (QbD) methodology to develop CE-based enantioselective techniques is becoming increasingly popular. The review presents the current use of DoE methodologies in CE-based enantioresolution method development and provides an overview of DoE applications in the optimization and validation of CE enantioselective procedures in the last 25 years. Moreover, a critical perspective on how different DoE strategies can aid in the optimization of enantioseparation procedures is presented.
手性是药物研究和工业中的主要问题之一。在药物对映体分离中,毛细管电泳(CE)是一种比更频繁使用的色谱技术更有趣的替代方法,用于测定对映体比例、对映体纯度和药代动力学研究。传统上,CE 方法的优化使用单变量一次一因素(OFAT)方法进行;然而,这种策略不允许评估实验因素之间的相互作用,这可能导致方法开发和优化无效。在过去的二十年中,实验设计(DoE)经常被用于更好地理解输入因素对分析 CE 方法输出响应的多维影响和相互作用。DoE 可以分为两种类型:筛选和优化设计。此外,使用基于质量的设计(QbD)方法来开发基于 CE 的对映选择性技术变得越来越流行。本文综述了 DoE 方法在基于 CE 的对映体拆分方法开发中的当前应用,并概述了过去 25 年中 DoE 在 CE 对映选择性方法的优化和验证中的应用。此外,还提出了一种批判性观点,即不同的 DoE 策略如何有助于优化对映体分离程序。