Aho J, Van Renterghem J, Arnfast L, De Beer T, Rantanen J
University of Copenhagen, Department of Pharmacy, Universitetsparken 2, DK-2100 Copenhagen, Denmark.
Ghent University, Laboratory of Pharmaceutical Process Analytical Technology, Ottergemsesteenweg 460, B-9000 Ghent, Belgium.
Int J Pharm. 2017 Aug 7;528(1-2):383-394. doi: 10.1016/j.ijpharm.2017.06.012. Epub 2017 Jun 11.
The presence of solid matter in polymer melts affects the rheological properties of a drug-polymer mixture, and thus the processability of these mixtures in melt-based processes. The particle morphological changes related to dissolution and crystal growth in the mixtures of paracetamol and ibuprofen with polyethylene oxide and methacrylate copolymer (Eudragit E PO) were observed by polarized microscopy simultaneously while measuring their rheological properties within temperature ranges relevant for melt processes, such as hot melt extrusion and fused deposition modeling 3D printing. The dissolution of solid crystalline matter into the molten polymer and its effects on the rheological parameters showed that the plasticization effect of the drug was highly dependent on the temperature range, and at a temperature high enough, plasticization induced by the small-molecule drugs could enhance the flowability even at very high drug loads. Therefore, even supersaturated mixtures can be plasticized efficiently, enabling their melt processing, such as hot melt extrusion or 3D printing. The combination of rheometry and polarized light microscopy proved to be very useful for studying the link between morphological changes in the drug-polymer and the flow behavior of the drug-polymer mixtures at different temperature ranges and deformation modes.
聚合物熔体中固体物质的存在会影响药物 - 聚合物混合物的流变性质,进而影响这些混合物在基于熔体的工艺中的可加工性。在与熔体工艺(如热熔挤出和熔融沉积建模3D打印)相关的温度范围内测量对乙酰氨基酚和布洛芬与聚环氧乙烷和甲基丙烯酸酯共聚物(尤特奇E PO)混合物的流变性质时,通过偏光显微镜同时观察到了与混合物中溶解和晶体生长相关的颗粒形态变化。固体结晶物质溶解到熔融聚合物中及其对流变参数的影响表明,药物的增塑效果高度依赖于温度范围,并且在足够高的温度下,小分子药物引起的增塑即使在非常高的药物负载量下也能增强流动性。因此,即使是过饱和混合物也能被有效增塑,从而实现其熔体加工,如热熔挤出或3D打印。流变学和偏光显微镜的结合被证明对于研究药物 - 聚合物的形态变化与不同温度范围和变形模式下药物 - 聚合物混合物的流动行为之间的联系非常有用。