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应用加速稳定性评估程序(ASAP)于药品稳定性的质量设计(QbD)。

The application of the Accelerated Stability Assessment Program (ASAP) to quality by design (QbD) for drug product stability.

机构信息

Pfizer Inc., Groton, Connecticut 06340, USA.

出版信息

AAPS PharmSciTech. 2011 Sep;12(3):932-7. doi: 10.1208/s12249-011-9657-3. Epub 2011 Jul 12.

DOI:10.1208/s12249-011-9657-3
PMID:21748541
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3167263/
Abstract

An isoconversion paradigm, where times in different temperature and humidity-controlled stability chambers are set to provide a fixed degradant level, is shown to compensate for the complex, non-single order kinetics of solid drug products. A humidity-corrected Arrhenius equation provides reliable estimates for temperature and relative humidity effects on degradation rates. A statistical protocol is employed to determine best fits for chemical stability data, which in turn allows for accurate estimations of shelf life (with appropriate confidence intervals) at any storage condition including inside packaging (based on the moisture vapor transmission rate of the packaging and moisture sorption isotherms of the internal components). These methodologies provide both faster results and far better predictions of chemical stability limited shelf life (expiry) than previously possible. Precise shelf-life estimations are generally determined using a 2-week, product-specific protocol. Once the model for a product is developed, it can play a critical role in providing the product understanding necessary for a quality by design (QbD) filing for product approval and enable rational control strategies to assure product stability. Moreover, this Accelerated Stability Assessment Program (ASAP) enables the coupling of product attributes (e.g., moisture content, packaging options) to allow for flexibility in how control strategies are implemented to provide a balance of cost, speed, and other factors while maintaining adequate stability.

摘要

采用等转化率范式,在不同温度和湿度控制的稳定性室内设置时间,以提供固定的降解物水平,从而补偿固体药物产品复杂的、非单一顺序动力学。湿度校正的阿累尼乌斯方程为温度和相对湿度对降解速率的影响提供了可靠的估计。采用统计协议来确定化学稳定性数据的最佳拟合,从而可以在任何储存条件下(包括内包装)准确估计保质期(具有适当的置信区间),这是基于包装的水蒸气透过率和内部组件的水分吸附等温线。这些方法提供了比以前更快的结果和对化学稳定性有限保质期(有效期)的更好预测。通常使用为期两周的特定产品协议来确定精确的保质期估计。一旦为产品开发了模型,它就可以在提供质量源于设计(QbD)产品批准文件所需的产品理解方面发挥关键作用,并能够采用合理的控制策略来确保产品稳定性。此外,该加速稳定性评估计划(ASAP)可以将产品属性(例如水分含量、包装选项)结合起来,以便在实施控制策略时灵活调整,在保持足够稳定性的同时平衡成本、速度和其他因素。

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本文引用的文献

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Package selection for moisture protection for solid, oral drug products.固体口服药物的防潮包装选择。
J Pharm Sci. 2010 Nov;99(11):4437-52. doi: 10.1002/jps.22161.
2
Predicting drug hydrolysis based on moisture uptake in various packaging designs.基于不同包装设计中的吸湿情况预测药物水解
Eur J Pharm Sci. 2008 Dec 18;35(5):447-56. doi: 10.1016/j.ejps.2008.09.007. Epub 2008 Oct 1.
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Pharmaceutical quality by design: product and process development, understanding, and control.药品质量源于设计:产品与工艺开发、理解及控制
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Pharm Res. 2007 Apr;24(4):780-90. doi: 10.1007/s11095-006-9201-4. Epub 2007 Feb 15.
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Ionization states in the microenvironment of solid dosage forms: effect of formulation variables and processing.固体剂型微环境中的离子化状态:制剂变量和工艺的影响
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