Caccavo Diego, Lamberti Gaetano, Barba Anna Angela, Abrahmsén-Alami Susanna, Viridén Anna, Larsson Anette
Department of Industrial Engineering, University of Salerno, 84084 Fisciano (SA), Italy.
Department of Pharmacy, University of Salerno, 84084 Fisciano (SA),Italy.
Int J Pharm. 2017 Aug 7;528(1-2):705-713. doi: 10.1016/j.ijpharm.2017.06.064. Epub 2017 Jun 19.
The purpose of this study was to investigate the hydration behavior of two matrix formulations containing the cellulose derivative hydroxypropyl methylcellulose (HPMC). The two HPMC batches investigated had different substitution pattern along the backbone; the first one is referred to as heterogeneous and the second as homogenous. The release of both the drug molecule theophylline and the polymer was determined. Additionally, the water concentrations at different positions in the swollen gel layers were determined by Magnetic Resonance Imaging. The experimental data was compared to predicted values obtained by the extension of a mechanistic Fickian based model. The hydration of tablets containing the more homogenous HPMC batch showed a gradual water concentration gradient in the gel layer and could be well predicted. The hydration process for the more heterogeneous batch showed a very abrupt step change in the water concentration in the gel layer and could not be well predicted. Based on the comparison between the experimental and predicted data this study suggests, for the first time, that formulations with HPMC of different heterogeneities form gels in different ways. The homogeneous HPMC batch exhibits a water sorption behavior ascribable to a Ficḱs law for the diffusion process whereas the more heterogeneous HPMC batches does not. This conclusion is important in the future development of simulation models and in the understanding of drug release mechanism from hydrophilic matrices.
本研究的目的是研究含有纤维素衍生物羟丙基甲基纤维素(HPMC)的两种基质配方的水化行为。所研究的两批HPMC沿主链具有不同的取代模式;第一批被称为非均相的,第二批被称为均相的。测定了药物分子茶碱和聚合物的释放情况。此外,通过磁共振成像确定了溶胀凝胶层中不同位置的水浓度。将实验数据与通过基于菲克扩散机理模型扩展得到的预测值进行了比较。含有更均相HPMC批次的片剂的水化在凝胶层中显示出逐渐的水浓度梯度,并且可以得到很好的预测。更非均相批次的水化过程在凝胶层中的水浓度显示出非常突然的阶跃变化,并且不能得到很好的预测。基于实验数据和预测数据之间的比较,本研究首次表明,具有不同非均质性的HPMC配方以不同方式形成凝胶。均相HPMC批次表现出可归因于扩散过程菲克定律的吸水行为,而更非均相的HPMC批次则不然。这一结论在模拟模型的未来发展以及理解亲水性基质的药物释放机制方面具有重要意义。