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持续的分析程序 性能验证 使用基于风险的方法来确定性能监控要求
Phil J Borman1, Amanda M Guiraldelli1, Jane Weitzel1
1US Pharmacopeia 12601 Twinbrook Pkwy, Rockville, Maryland 20851, United States.
Analytical chemistry
|January 8, 2024
概括
分析程序生命周期 (APLC) 框架确保分析程序保持适合目的. 持续性能验证 (OPPV) 监控验证后的程序,使用早期阶段的数据进行有效的控制.
科学领域:
- 制药科学 制药科学
- 分析化学 分析化学
- 质量控制 质量控制 质量控制
背景情况:
- 分析程序生命周期 (APLC) 框架,详见USP一般章节<1220>,指导分析程序的验证和使用.
- 确保分析程序在其整个生命周期中保持适合目的,在制药质量控制中至关重要.
研究的目的:
- 描述APLC框架的实施,重点是持续的分析程序性能验证 (OPPV).
- 要突出APLC第1阶段和第2阶段的知识如何为第3阶段的OPPV设计提供信息.
- 解释风险评估和分析目标配置文件 (ATP) 在定义 OPPV 要求中的作用.
主要方法:
- 使用APLC实施的三阶段框架:程序设计,绩效合格和持续的绩效验证.
- 使用风险评估来确定OPPV的常规监测的范围.
- 利用分析目标配置文件 (ATP) 建立性能验证的接受标准.
主要成果:
- 通过持续的数据收集和分析,OPPV (第三阶段) 确保分析程序在验证后保持在控制状态.
- 对OPPV的常规监测计划是基于在程序设计和合格过程中获得的知识而设计的.
- 对于OPPV的验证标准可以从现有的验证或系统适用性测试中得出,即使没有完全应用的APLC框架.
结论:
- APLC框架提供了一种全面的方法,以保持分析程序的性能,并确保适合目的.
- OPPV是APLC的关键组成部分,可以持续监测和控制分析程序.
- 生命周期方法的元素可以追溯应用,以增强现有程序.
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