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Analytical control of process impurities in Pazopanib hydrochloride by impurity fate mapping.

机译:通过杂质命运图谱分析控制盐酸帕唑帕尼过程中的杂质。

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摘要

Understanding the origin and fate of organic impurities within the manufacturing process along with a good control strategy is an integral part of the quality control of drug substance. Following the underlying principles of quality by design (QbD), a systematic approach to analytical control of process impurities by impurity fate mapping (IFM) has been developed and applied to the investigation and control of impurities in the manufacturing process of Pazopanib hydrochloride, an anticancer drug approved recently by the U.S. FDA. This approach requires an aggressive chemical and analytical search for potential impurities in the starting materials, intermediates and drug substance, and experimental studies to track their fate through the manufacturing process in order to understand the process capability for rejecting such impurities. Comprehensive IFM can provide elements of control strategies for impurities. This paper highlights the critical roles that analytical sciences play in the IFM process and impurity control. The application of various analytical techniques (HPLC, LC-MS, NMR, etc.) and development of sensitive and selective methods for impurity detection, identification, separation and quantification are highlighted with illustrative examples. As an essential part of the entire control strategy for Pazopanib hydrochloride, analytical control of impurities with 'meaningful' specifications and the 'right' analytical methods is addressed. In particular, IFM provides scientific justification that can allow for control of process impurities up-stream at the starting materials or intermediates whenever possible.
机译:了解生产过程中有机杂质的来源和去向以及良好的控制策略是原料药质量控制不可或缺的一部分。遵循设计质量(QbD)的基本原则,开发了一种通过杂质命运图谱(IFM)分析控制过程杂质的系统方法,并将其应用于抗癌药Pazopanib盐酸生产过程中的杂质研究和控制。该药物最近被美国FDA批准。这种方法要求对原料,中间体和原料药中的潜在杂质进行积极的化学和分析搜索,并且需要进行实验研究以跟踪其在整个制造过程中的命运,以便了解排除此类杂质的工艺能力。全面的IFM可以提供杂质控制策略的要素。本文重点介绍了分析科学在IFM过程和杂质控制中发挥的关键作用。通过举例说明,重点介绍了各种分析技术(HPLC,LC-MS,NMR等)的应用以及灵敏和选择性的杂质检测,鉴定,分离和定量方法的开发。作为盐酸帕唑帕尼整个控制策略的重要组成部分,研究了具有“有意义”规格和“正确”分析方法的杂质的分析控制。特别是,IFM提供了科学依据,可以在可能的情况下控制上游原料或中间体的工艺杂质。

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