Iemtsev Anton, Klajmon Martin, Hassouna Fatima, Fulem Michal
Department of Physical Chemistry, University of Chemistry and Technology, Prague, Technická 5, 166 28 Prague, Czech Republic.
Faculty of Chemical Engineering, University of Chemistry and Technology, Prague, Technická 5, 166 28 Prague, Czech Republic.
Pharmaceutics. 2023 Feb 14;15(2):645. doi: 10.3390/pharmaceutics15020645.
Prediction of compatibility of the active pharmaceutical ingredient (API) with the polymeric carrier plays an essential role in designing drug delivery systems and estimating their long-term physical stability. A key element in deducing API-polymer compatibility is knowledge of a complete phase diagram, i.e., the solubility of crystalline API in polymer and mutual miscibility of API and polymer. In this work, the phase behavior of ibuprofen (IBU) with different grades of poly(D,L-lactide-co-glycolide) (PLGA) and polylactide (PLA), varying in composition of PLGA and molecular weight of PLGA and PLA, was investigated experimentally using calorimetry and computationally by the perturbed-chain statistical associating fluid theory (PC-SAFT) equation of state (EOS). The phase diagrams constructed based on a PC-SAFT EOS modeling optimized using the solubility data demonstrated low solubility at typical storage temperature (25 °C) and limited miscibility (i.e., presence of the amorphous-amorphous phase separation region) of IBU with all polymers studied. The ability of PC-SAFT EOS to capture the experimentally observed trends in the phase behavior of IBU-PLA/PLGA systems with respect to copolymer composition and molecular weight was thoroughly investigated and evaluated.
预测活性药物成分(API)与聚合物载体的相容性在设计药物递送系统和评估其长期物理稳定性方面起着至关重要的作用。推断API与聚合物相容性的一个关键要素是完整相图的知识,即结晶API在聚合物中的溶解度以及API与聚合物的相互混溶性。在这项工作中,使用量热法对布洛芬(IBU)与不同等级的聚(D,L-丙交酯-共-乙交酯)(PLGA)和聚丙交酯(PLA)的相行为进行了实验研究,其中PLGA的组成以及PLGA和PLA的分子量各不相同,并通过状态方程(EOS)的扰动链统计缔合流体理论(PC-SAFT)进行了计算研究。基于使用溶解度数据优化的PC-SAFT EOS模型构建的相图表明,在典型储存温度(25°C)下,IBU在所有研究的聚合物中的溶解度较低,且混溶性有限(即存在非晶-非晶相分离区域)。对PC-SAFT EOS捕捉IBU-PLA/PLGA系统在相行为方面关于共聚物组成和分子量的实验观察趋势的能力进行了全面研究和评估。