D'Abbrunzo Ilenia, Venier Elisabetta, Selmin Francesca, Škorić Irena, Bernardo Enrico, Procida Giuseppe, Perissutti Beatrice
Department of Chemical and Pharmaceutical Sciences, University of Trieste, Piazzale Europa 1, 34127 Trieste, Italy.
Department of Pharmaceutical Sciences, University of Milan, Via G. Colombo, 71, 20133 Milan, Italy.
Pharmaceutics. 2025 Jan 12;17(1):92. doi: 10.3390/pharmaceutics17010092.
This study investigates the preparation of coamorphous systems composed entirely of active pharmaceutical ingredients (APIs), namely praziquantel, niclosamide, and mebendazole. The objective was to formulate and characterize binary and ternary coamorphous systems to evaluate their structural, thermal, and stability properties. Ten different mixtures (binary and ternary) were designed through a mixture design approach and prepared using a sustainable, one-step neat grinding process in a lab-scale vibrational mill. The systems were prepared reproducibly within 4 h across the entire experimental domain. Structural characterization was performed using PXRD and FTIR to confirm the absence of crystalline domains and the presence of molecular interactions. The glass transition temperature (T) was theoretically calculated using the Gordon-Taylor equation for three-component systems and determined experimentally via DSC. Stability studies were conducted on seven systems under different storage conditions (-30 °C, 5 °C, 25 °C, and 40 °C) for six months. PXRD analysis confirmed the formation of coamorphous systems with no crystalline phases. DSC revealed a single T for most systems, indicating homogeneity. Stability studies demonstrated that five out of seven systems adhered to the "T-50 °C" stability rule, remaining physically stable over six months. Recrystallization studies indicated diverse pathways: some systems reverted to their original crystalline phases, while others formed new entities such as cocrystals. This study highlights the feasibility of coamorphous systems composed of multiple APIs using a simple, solvent-free grinding approach. The findings underscore the importance of molecular interactions in determining stability and recrystallization behavior, offering insights for designing robust coamorphous formulations.
本研究调查了完全由活性药物成分(APIs)组成的共无定形体系的制备,这些活性药物成分即吡喹酮、氯硝柳胺和甲苯咪唑。目的是制备并表征二元和三元共无定形体系,以评估其结构、热性质和稳定性。通过混合设计方法设计了十种不同的混合物(二元和三元),并在实验室规模的振动磨中使用可持续的一步纯研磨工艺制备。在整个实验范围内,这些体系可在4小时内可重复制备。使用粉末X射线衍射(PXRD)和傅里叶变换红外光谱(FTIR)进行结构表征,以确认不存在结晶域和分子间相互作用的存在。玻璃化转变温度(Tg)使用针对三元体系的戈登-泰勒方程进行理论计算,并通过差示扫描量热法(DSC)进行实验测定。在不同储存条件(-30°C、5°C、25°C和40°C)下对七个体系进行了为期六个月的稳定性研究。PXRD分析证实形成了无结晶相的共无定形体系。DSC显示大多数体系有单一的Tg,表明具有均一性。稳定性研究表明,七个体系中有五个符合“Tg - 50°C”稳定性规则,在六个月内保持物理稳定。重结晶研究表明存在多种途径:一些体系恢复到其原始结晶相,而另一些则形成了新的实体,如共晶体。本研究强调了使用简单、无溶剂研磨方法制备由多种API组成的共无定形体系的可行性。研究结果强调了分子间相互作用在决定稳定性和重结晶行为方面的重要性,为设计稳健的共无定形制剂提供了见解。