首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Improvement of a stability-indicating method by Quality-by-Design versus Quality-by-Testing: A case of a learning process
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Improvement of a stability-indicating method by Quality-by-Design versus Quality-by-Testing: A case of a learning process

机译:通过设计质量与测试质量进行稳定性指示的方法的改进:学习过程的案例

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The understanding of the method is a major concern when developing a stability-indicating method and even more so when dealing with impurity assays from complex matrices. In the presented case study, a Quality-by-Design approach was applied in order to optimize a routinely used method. An analytical issue occurring at the last stage of a long-term stability study involving unexpected impurities perturbing the monitoring of characterized impurities needed to be resolved. A compliant Quality-by-Design (QbD) methodology based on a Design of Experiments (DoE) approach was evaluated within the framework of a Liquid Chromatography (LC) method. This approach allows the investigation of Critical Process Parameters (CPPs), which have an impact on Critical Quality Attributes (CQAs) and, consequently, on LC selectivity. Using polynomial regression response modeling as well as Monte Carlo simulations for error propagation, Design Space (DS) was computed in order to determine robust working conditions for the developed stability-indicating method. This QbD compliant development was conducted in two phases allowing the use of the Design Space knowledge acquired during the first phase to define the experimental domain of the second phase, which constitutes a learning process. The selected working condition was then fully validated using accuracy profiles based on statistical tolerance intervals in order to evaluate the reliability of the results generated by this LC/ESI-MS stability-indicating method.A comparison was made between the traditional Quality-by-Testing (QbT) approach and the QbD strategy, highlighting the benefit of this QbD strategy in the case of an unexpected impurities issue. On this basis, the advantages of a systematic use of the QbD methodology were discussed.
机译:在开发稳定性指示方法时,尤其是在处理来自复杂基质的杂质分析时,对方法的理解是一个主要问题。在本案例研究中,采用了“按设计质量”方法,以优化常规使用的方法。在长期稳定性研究的最后阶段发生的一个分析问题,涉及意料之外的杂质干扰了需要解决的特征性杂质的监测。在液相色谱(LC)方法的框架内,评估了基于实验设计(DoE)方法的合格设计质量(QbD)方法。这种方法可以研究关键工艺参数(CPP),这对关键质量属性(CQA)以及LC选择性都有影响。使用多项式回归响应模型以及用于错误传播的蒙特卡洛模拟,计算设计空间(DS),以便为已开发的稳定性指示方法确定可靠的工作条件。这项QbD兼容开发工作分两个阶段进行,允许使用在第一阶段中获得的设计空间知识来定义第二阶段的实验领域,这构成了学习过程。然后使用基于统计公差间隔的精度曲线对选定的工作条件进行完全验证,以评估此LC / ESI-MS稳定性指示方法产生的结果的可靠性。将传统的质量检测方法进行了比较(QbT)方法和QbD策略,突出了此QbD策略在意外杂质问题中的好处。在此基础上,讨论了系统地使用QbD方法的优势。

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