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药用泡罩包装中药品稳定性的预测模型

Predictive Modeling of Drug Product Stability in Pharmaceutical Blister Packs.

作者信息

Pech Jan, Kaminski Christoph, Markus Matthias, Hoheisel Werner, Heumann Roman, Winck Judith, Thommes Markus

机构信息

Laboratory of Solids Process Engineering, Department of Biochemical and Chemical Engineering, Technical University Dortmund, Emil-Figge-Str. 68, 44227 Dortmund, Germany.

INVITE GmbH, Otto-Bayer-Str. 32, 51061 Cologne, Germany.

出版信息

Pharmaceutics. 2025 Sep 22;17(9):1233. doi: 10.3390/pharmaceutics17091233.

Abstract

The principal function of pharmaceutical blister packaging is to provide protection for the drug product. Moisture is regarded as a critical factor in the physical and chemical aging of drug products. The present work proposes a modeling framework to predict the performance of tablet blister materials based on the moisture uptake profile of the drug product as well as degradation characteristics of the drug substance, while the consumption of water due to degradation is included. The model incorporates three kinetic superimposed processes that define moisture uptake and drug stability. The processes of permeation, sorption and degradation are each described with a rate constant. Based on a mass balance, these rate processes are interconnected and the relative humidity in the blister cavity is predicted. In a case study, the model was applied to demonstrate the feasibility of predicting the stability of blistered tablets. By establishing a correlation between the moisture uptake of the tablet and the drug stability demonstrated in the model, it was feasible to predict the drug content over shelf life. Modeling of the drug stability of blister-packed products enables a rational packaging which offers novel possibilities for reducing material in order to avoid overpackaging of pharmaceutical products. As some of the commonly used barrier materials are considered to not be sustainable, this model can be used to consider a rationally justified reduction or even abandonment of the barrier materials.

摘要

药品泡罩包装的主要功能是为药品提供保护。水分被视为药品物理和化学老化的关键因素。本研究提出了一个建模框架,用于根据药品的吸湿特性以及药物原料的降解特性来预测片剂泡罩材料的性能,同时考虑到降解过程中水分的消耗。该模型包含三个叠加的动力学过程,用于定义吸湿和药物稳定性。渗透、吸附和降解过程分别用一个速率常数来描述。基于质量平衡,这些速率过程相互关联,并预测泡罩腔内的相对湿度。在一个案例研究中,该模型被用于证明预测泡罩片剂稳定性的可行性。通过在模型中建立片剂吸湿与药物稳定性之间的相关性,可以预测药品在保质期内的含量。泡罩包装产品的药物稳定性建模有助于实现合理包装,为减少材料用量提供了新的可能性,从而避免药品过度包装。由于一些常用的阻隔材料被认为不可持续,该模型可用于考虑合理地减少甚至摒弃阻隔材料。

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