Institute of Physics, University of Silesia in Katowice, ul. 75 Pułku Piechoty 1, 41-500 Chorzów, Poland.
Silesian Center for Education and Interdisciplinary Research, ul. 75 Pułku Piechoty 1a, 41-500 Chorzów, Poland.
Mol Pharm. 2020 Aug 3;17(8):3087-3105. doi: 10.1021/acs.molpharmaceut.0c00517. Epub 2020 Jul 9.
In this paper, we explore the strategy increasingly used to improve the bioavailability of poorly water-soluble crystalline drugs by formulating their amorphous solid dispersions. We focus on the potential application of a low molecular weight excipient octaacetyl-maltose (acMAL) to prepare physically stable amorphous solid dispersions with ibuprofen (IBU) aimed at enhancing water solubility of the drug compared to that of its crystalline counterpart. We thoroughly investigate global and local molecular dynamics, thermal properties, and physical stability of the IBU+acMAL binary systems by using broadband dielectric spectroscopy and differential scanning calorimetry as well as test their water solubility and dissolution rate. The obtained results are extensively discussed by analyzing several factors considered to affect the physical stability of amorphous systems, including those related to the global mobility, such as plasticization/antiplasticization effects, the activation energy, fragility parameter, and the number of dynamically correlated molecules as well as specific intermolecular interactions like hydrogen bonds, supporting the latter by density functional theory calculations. The observations made for the IBU+acMAL binary systems and drawn recommendations give a better insight into our understanding of molecular mechanisms governing the physical stability of amorphous solid dispersions.
在本文中,我们探讨了一种通过将其制备成无定形固体分散体来提高疏水性结晶药物生物利用度的策略。我们专注于低分子量赋形剂八乙酰麦芽糖(acMAL)的潜在应用,旨在通过与结晶型药物相比提高药物的水溶性,制备物理稳定的布洛芬(IBU)无定形固体分散体。我们通过使用宽频介电谱和差示扫描量热法,深入研究了 IBU+acMAL 二元体系的整体和局部分子动力学、热性质和物理稳定性,并测试了它们的水溶性和溶解速率。通过分析影响无定形体系物理稳定性的几个因素,包括与整体迁移性相关的因素,如增塑/抗塑化效应、活化能、脆性参数和动态相关分子的数量,以及氢键等特定的分子间相互作用,对所得结果进行了广泛讨论,并通过密度泛函理论计算支持了后者,从而对无定形固体分散体的物理稳定性的分子机制有了更好的理解。对 IBU+acMAL 二元体系的观察和得出的建议使我们对无定形固体分散体物理稳定性的分子机制有了更深入的了解。