Markl Daniel, Yassin Samy, Wilson D Ian, Goodwin Daniel J, Anderson Andrew, Zeitler J Axel
Department of Chemical Engineering and Biotechnology, University of Cambridge, West Cambridge Site, Philippa Fawcett Drive, Cambridge CB3 0AS, UK.
GlaxoSmithKline, New Frontiers Science Park, Harlow, Essex CM19 5AW, UK.
Int J Pharm. 2017 Jun 30;526(1-2):1-10. doi: 10.1016/j.ijpharm.2017.04.015. Epub 2017 Apr 8.
Oral dosage forms are an integral part of modern health care and account for the majority of drug delivery systems. Traditionally the analysis of the dissolution behaviour of a dosage form is used as the key parameter to assess the performance of a drug product. However, understanding the mechanisms of disintegration is of critical importance to improve the quality of drug delivery systems. The disintegration performance is primarily impacted by the hydration and subsequent swelling of the powder compact. Here we compare liquid ingress and swelling data obtained using terahertz pulsed imaging (TPI) to a set of mathematical models. The interlink between hydration kinetics and swelling is described by a model based on Darcy's law and a modified swelling model based on that of Schott. Our new model includes the evolution of porosity, pore size and permeability as a function of hydration time. Results obtained from two sets of samples prepared from pure micro-crystalline cellulose (MCC) indicate a clear difference in hydration and swelling for samples of different porosities and particle sizes, which are captured by the model. Coupling a novel imaging technique, such as TPI, and mathematical models allows better understanding of hydration and swelling and eventually tablet disintegration.
口服剂型是现代医疗保健不可或缺的一部分,并且在药物递送系统中占大多数。传统上,剂型溶出行为的分析被用作评估药品性能的关键参数。然而,了解崩解机制对于提高药物递送系统的质量至关重要。崩解性能主要受粉末压块的水化和随后的溶胀影响。在此,我们将使用太赫兹脉冲成像(TPI)获得的液体渗入和溶胀数据与一组数学模型进行比较。基于达西定律的模型和基于肖特模型修改的溶胀模型描述了水化动力学与溶胀之间的相互联系。我们的新模型包括孔隙率、孔径和渗透率随水化时间的变化。从由纯微晶纤维素(MCC)制备的两组样品获得的结果表明,不同孔隙率和粒径的样品在水化和溶胀方面存在明显差异,该模型能够捕捉到这些差异。将诸如TPI之类的新型成像技术与数学模型相结合,可以更好地理解水化和溶胀以及最终的片剂崩解。