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湿度校正的阿伦尼乌斯方程:参考条件法。

Humidity-corrected Arrhenius equation: The reference condition approach.

作者信息

Naveršnik Klemen, Jurečič Rok

机构信息

SDC Slovenia, Lek Pharmaceuticals d.d., Verovškova 57, SI-1529 Ljubljana, Slovenia.

SDC Slovenia, Lek Pharmaceuticals d.d., Verovškova 57, SI-1529 Ljubljana, Slovenia.

出版信息

Int J Pharm. 2016 Mar 16;500(1-2):360-5. doi: 10.1016/j.ijpharm.2016.01.047. Epub 2016 Jan 21.

Abstract

Accelerated and stress stability data is often used to predict shelf life of pharmaceuticals. Temperature, combined with humidity accelerates chemical decomposition and the Arrhenius equation is used to extrapolate accelerated stability results to long-term stability. Statistical estimation of the humidity-corrected Arrhenius equation is not straightforward due to its non-linearity. A two stage nonlinear fitting approach is used in practice, followed by a prediction stage. We developed a single-stage statistical procedure, called the reference condition approach, which has better statistical properties (less collinearity, direct estimation of uncertainty, narrower prediction interval) and is significantly easier to use, compared to the existing approaches. Our statistical model was populated with data from a 35-day stress stability study on a laboratory batch of vitamin tablets and required mere 30 laboratory assay determinations. The stability prediction agreed well with the actual 24-month long term stability of the product. The approach has high potential to assist product formulation, specification setting and stability statements.

摘要

加速和应力稳定性数据常用于预测药品的保质期。温度与湿度共同作用会加速化学分解,阿仑尼乌斯方程用于将加速稳定性结果外推至长期稳定性。由于湿度校正的阿仑尼乌斯方程具有非线性,其统计估计并不简单。实际中采用两阶段非线性拟合方法,随后是预测阶段。我们开发了一种单阶段统计程序,称为参考条件法,与现有方法相比,它具有更好的统计特性(共线性更低、直接估计不确定性、预测区间更窄)且使用起来明显更简便。我们的统计模型采用了一批实验室生产的维生素片进行的35天应力稳定性研究的数据,仅需30次实验室分析测定。稳定性预测与该产品实际24个月的长期稳定性吻合良好。该方法在协助产品配方设计、规格设定和稳定性声明方面具有很大潜力。

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