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首页> 外文期刊>Analytical chemistry >Use of Stage-Wise AQbD and an Orthogonality Approach to Develop a Short-Runtime Method for the Simultaneous Quantification of Bosentan and Impurities using UPLC Equipped with PDA and ESI-MS
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Use of Stage-Wise AQbD and an Orthogonality Approach to Develop a Short-Runtime Method for the Simultaneous Quantification of Bosentan and Impurities using UPLC Equipped with PDA and ESI-MS

机译:使用阶段 - 明智的AQBD和正交性方法来开发用于同时量化波丝坦和使用配备PDA和ESI-MS的杂质的短暂运行时间方法

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摘要

Analytical quality by design (AQbD) and method orthogonality are comprehensive tools used to develop an analytical method based on statistical and graphical evaluation. These tools provide complete knowledge of the method and help to develop precise, accurate, and specific methods. The present work elaborates the development of a selective and precise method for the quantification of bosentan and its nine impurities with a short runtime of 10 min using a statistically driven stage-wise AQbD approach with proven orthogonality. The optimum method was developed using 10 mM ammonium acetate pH 2.5 and acetonitrile in a gradient mode on an Agilent Zorbax Bonus RP RRHD 100 × 2.1 mm and 1.8 μm column with a flow rate of 0.45 mL/min at a column temperature of 40 °C. The robustness of the method was proven for the normal operating range (NOR) using Monte Carlo stimulations. The method was challenged using an orthogonal method that was developed based on the trellis graphs and surface response outcome of the design of experiment (DoE). The orthogonality factor between methods was calculated by measuring the correlation coefficient (r ) of the retention factor (k ′) calculated for each peak on both methods. A forced degradation study was performed to challenge the method, and stressed samples were analyzed using both orthogonal methods. The outcome of the experiment proved that the approach of developing methods using the AQbD approach and then challenging them with orthogonality helps to develop a robust method. The method was further validated as per ICH guidelines.
机译:设计分析质量(AQbD)和方法正交性是用于开发基于统计和图形评估的分析方法的综合工具。这些工具提供了该方法的完整知识,并有助于开发精确、准确和具体的方法。本工作阐述了一种选择性和精确的波生坦及其九种杂质定量方法的开发,该方法使用经验证的正交性统计驱动的阶段性AQbD方法,运行时间短10分钟。在安捷伦Zorbax Bonus RP RRHD 100×2.1 mM和1.8μm色谱柱上,在40°C的柱温下,使用pH值为2.5的10 mM醋酸铵和梯度模式的乙腈,以0.45 mL/min的流速开发了最佳方法。通过蒙特卡罗模拟,证明了该方法在正常操作范围(NOR)下的鲁棒性。该方法受到了挑战,使用了基于试验设计(DoE)的网格图和表面响应结果开发的正交方法。通过测量两种方法中每个峰的保留因子(k′)的相关系数(r),计算方法之间的正交系数。对该方法进行了强制降解研究,并使用两种正交方法分析了应力样品。实验结果证明,使用AQbD方法开发方法,然后用正交性对其进行挑战,有助于开发出一种稳健的方法。根据ICH指南对该方法进行了进一步验证。

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