Meiland Peter, Larsen Bjarke Strøm, Knopp Matthias Manne, Tho Ingunn, Rades Thomas
Department of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, Universitetsparken 2, 2100 Copenhagen, Denmark.
Department of Pharmacy, Faculty of Mathematics and Natural Sciences, University of Oslo, Sem Sælands vei 3, 0371 Oslo, Norway.
Int J Pharm. 2022 Dec 15;629:122391. doi: 10.1016/j.ijpharm.2022.122391. Epub 2022 Nov 13.
In this study, a new method to determine the solubility of crystalline drugs in (amorphous) polymers is proposed. The method utilizes annealing of supersaturated amorphous solid dispersions to achieve equilibrium between dissolved and recrystallized drug. By measuring the enthalpy of melting and mixing (H) of the recrystallized drug, the equilibrium solubility of the drug in the polymer at the annealing temperature is determined. The equilibrium solubilities at these elevated temperatures were used to extrapolate to room temperature using the Flory-Huggins model. The new H method showed solubility predictions in line with the melting point depression (MPD) and recrystallization (RC) methods for indomethacin (IMC) -polyvinylpyrrolidone (PVP). For IMC-hydroxypropyl methylcellulose (HPMC), the MPD method plateaued rapidly, leaving only one usable data point. The RC method showed large variations in the solubility predictions possibly due to a narrow glass transition temperature (T) window or inaccurate T determination. In contrast, the new H method showed robust solubility prediction over the entire annealing temperature range with low variation and narrow error margins after extrapolation for both drug-polymer systems. The new H method was able to accurately determine the drug-polymer solubility of IMC-HPMC, showing promise as a new tool to determine the solubility of problematic drug-polymer systems.
在本研究中,提出了一种测定结晶药物在(非晶态)聚合物中溶解度的新方法。该方法利用过饱和非晶态固体分散体的退火处理,以实现溶解药物和重结晶药物之间的平衡。通过测量重结晶药物的熔化和混合焓(H),可确定药物在退火温度下在聚合物中的平衡溶解度。利用弗洛里-哈金斯模型,将这些升高温度下的平衡溶解度外推至室温。对于吲哚美辛(IMC)-聚乙烯吡咯烷酮(PVP)体系,新的H方法显示的溶解度预测结果与熔点降低(MPD)法和重结晶(RC)法一致。对于IMC-羟丙基甲基纤维素(HPMC)体系,MPD法迅速达到平稳状态,仅留下一个可用数据点。RC法显示的溶解度预测结果变化很大可能是由于玻璃化转变温度(T)窗口狭窄或T测定不准确。相比之下,新的H方法在整个退火温度范围内均显示出可靠的溶解度预测,对于两种药物-聚合物体系,外推后的变化较小且误差范围较窄。新的H方法能够准确测定IMC-HPMC的药物-聚合物溶解度,有望成为测定有问题的药物-聚合物体系溶解度的新工具。