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采用分析质量源于设计原理开发 Celecoxib 的统一反相高效液相色谱法,用于有效测定 EP 和 USP 相关工艺杂质。

Development of a Unified Reversed-Phase HPLC Method for Efficient Determination of EP and USP Process-Related Impurities in Celecoxib Using Analytical Quality by Design Principles.

机构信息

Faculty of Pharmacy, University of Ljubljana, Aškerčeva c. 7, SI-1000 Ljubljana, Slovenia.

Analytics Department, Sandoz Development Center Slovenia, Lek Pharmaceuticals d.d., Verovškova ulica 57, SI-1526 Ljubljana, Slovenia.

出版信息

Molecules. 2020 Feb 13;25(4):809. doi: 10.3390/molecules25040809.

Abstract

This article presents the development of a reversed-phase (RP) high-performance liquid chromatographic (HPLC) method for determination of process-related impurities in a celecoxib drug substance following Analytical Quality by Design (AQbD) principles. The method from European Pharmacopeia (EP) for celecoxib drug substance does not sufficiently separate celecoxib from its EP impurity B because the system suitability criterion is not achieved (resolution NLT 1.8). The same issue was observed with the proposed method from United States Pharmacopeia (USP) for celecoxib capsules, where EP impurity A elutes under the main peak. A new HPLC method was developed that eliminates the disadvantages of the two pharmacopeial methods and is capable of efficiently separating and determining all seven impurities listed in EP and the proposed USP monographs. The development of a new HPLC method started with method scouting, in which various C18 and phenyl stationary phases were tested. Improved selectivity was obtained only with a chiral stationary phase. An immobilized Chiralpak IA-3 column used in RP mode turned out to be the most appropriate for method optimization. The ratio of acetonitrile in the mobile phase, flow rate, and column temperature were recognized as critical method parameters (CMPs) and were further investigated using a central composite face response-surface design. A multiple linear regression (MLR) method was applied to fit the mathematical models on the experimental data to determine factor-response relationships. The models created show adequate fit and good prediction abilities. The Monte Carlo simulation method was used to establish the design space. The method developed was verified in terms of precision, sensitivity, accuracy, and linearity, and the results showed that the new method is suitable for determination of seven process-related impurities of celecoxib.

摘要

本文介绍了一种反相(RP)高效液相色谱(HPLC)方法的开发,用于在分析质量源于设计(AQbD)原则下测定塞来昔布原料药中的工艺相关杂质。欧洲药典(EP)中塞来昔布原料药的方法不能充分分离塞来昔布与其 EP 杂质 B,因为系统适用性标准未达到(分辨率 NLT 1.8)。美国药典(USP)中塞来昔布胶囊的建议方法也存在同样的问题,其中 EP 杂质 A 在主峰下洗脱。开发了一种新的 HPLC 方法,该方法消除了两种药典方法的缺点,能够有效地分离和测定 EP 和 USP 专论中列出的所有七种杂质。新的 HPLC 方法的开发始于方法探索,其中测试了各种 C18 和苯基固定相。只有使用手性固定相才能获得更好的选择性。结果表明,在 RP 模式下使用固定化手性 Chiralpak IA-3 柱最适合方法优化。流动相中的乙腈比例、流速和柱温被认为是关键方法参数(CMPs),并使用中心复合面响应面设计进一步进行了研究。应用多元线性回归(MLR)方法拟合实验数据的数学模型,以确定因子-响应关系。所创建的模型显示出足够的拟合度和良好的预测能力。采用蒙特卡罗模拟方法建立设计空间。所开发的方法在精密度、灵敏度、准确度和线性度方面进行了验证,结果表明该方法适用于测定塞来昔布的七种工艺相关杂质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb5b/7070322/3870d991be2c/molecules-25-00809-g001.jpg

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