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Quality-by-Design Is a Tool for Quality Assurance in the Assessment of Enantioseparation of a Model Active Pharmaceutical Ingredient

机译:质量逐设计是在评估模型活性药物成分的映SIOSATION评估时质量保证的工具

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摘要

The design of experiments (DoE) is one of the quality-by-design tools valued in analytical method development, not only for cost reduction and time effectiveness, but also for enabling analytical method control and understanding via a systematic workflow, leading to analytical methods with built-in quality. This work aimed at using DoE to enhance method understanding for a developed UHPLC enantioseparation of terbutaline (TER), a model chiral drug, and to define quality assurance parameters associated with using chiral mobile phase additives (CMPA). Within a response surface methodology workflow, the effect of different factors on both chiral resolution and retention was screened and optimized using Plackett-Burman and central composite designs, respectively, followed by multivariate mathematical modeling. This study was able to delimit method robustness and elucidate enantiorecognition mechanisms involved in interactions of TER with the chiral modifiers. Among many CMPAs, successful TER enantioresolution was achieved using hydroxypropyl β-cyclodextrin (HP-β-CD) added to the mobile phase as 5.4 mM HP-β-CD in 52.25 mM ammonium acetate. Yet, limited method robustness was observed upon switching between the different tested CMPA, concluding that quality can only be assured with specific minimal pre-run conditioning time with the CMPA, namely 16-column volume (60 min at 0.1 mL/min). For enantiorecognition understanding, computational molecular modeling revealed hydrogen bonding as the main binding interaction, in addition to dipole-dipole inside the CD cavity for the R enantiomer, while the S enantiomer was less interactive.
机译:实验(DOE)的设计是分析方法开发中的质量设计工具之一,不仅用于降低成本和时间效率,还可以通过系统工作流程实现分析方法控制和理解,从而导致分析方法具有内置质量。这项工作旨在使用DOE提高方法理解,了解特布林碱(TER),模型手性药物的发达的UHPLC映对分析,并定义了使用手性移动相添加剂(CMPA)相关的质量保证参数。在响应面方法工作流程中,使用Plackett-Burman和中央复合设计,筛选和优化不同因素对手性分辨率和保留的影响,然后进行多变量数学建模。该研究能够分隔方法鲁棒性和阐明与手性改性剂相互作用的诱发性释认机制。在许多CMPA中,使用在52.25mM乙酸铵中加入到流动相中的羟丙基β-环糊精(HP-β-CD)来实现成功的TER对映体求解。然而,在不同测试的CMPA之间切换时观察到有限的方法鲁棒性,得出结论是,质量只能用特定的最小预制调理时间用CMPA,即16柱体积(60分钟为0.1ml / min)。对于肾上腺认知理解,除了用于R对映体的CD腔内的偶极子 - 偶极物之外,计算分子模型将揭示作为主要结合相互作用的氢键,而S对映体较低的相互作用。

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