Di Rong, Rades Thomas, Grohganz Holger
Department of Pharmacy, University of Copenhagen, 2200 Copenhagen, Denmark.
Pharmaceutics. 2023 Dec 31;16(1):67. doi: 10.3390/pharmaceutics16010067.
Using co-amorphous systems (CAMS) has shown promise in addressing the challenges associated with poorly water-soluble drugs. Quench-cooling is a commonly used CAMS preparation method, often followed by grinding or milling to achieve a fine powder that is suitable for subsequent characterization or further down-stream manufacturing. However, the impact of mechanical stress applied to CAMS has received little attention. In this study, the influence of mechanical stress on indomethacin-paracetamol CAMS was investigated. The investigation involved thermal analysis and solid-state characterization across various CAMS mixing ratios and levels of mechanical stress. The study revealed a negative effect of mechanical stress on stability, particularly on the excess components in CAMS. Higher levels of mechanical stress were observed to induce phase separation or recrystallization. Notably, samples at the optimal mixing ratio demonstrated greater resistance to the destabilization caused by mechanical stress. These results showed the significance of careful consideration of processing methods during formulation and the significance of optimizing mixing ratios in CAMS.
使用共无定形体系(CAMS)在应对与难溶性药物相关的挑战方面已显示出前景。骤冷是一种常用的CAMS制备方法,通常随后进行研磨或球磨以获得适合后续表征或进一步下游制造的细粉。然而,施加于CAMS的机械应力的影响很少受到关注。在本研究中,研究了机械应力对吲哚美辛-对乙酰氨基酚CAMS的影响。该研究涉及对各种CAMS混合比例和机械应力水平进行热分析和固态表征。研究揭示了机械应力对稳定性的负面影响,特别是对CAMS中的过量组分。观察到较高水平的机械应力会诱导相分离或重结晶。值得注意的是,处于最佳混合比例的样品对由机械应力引起的失稳表现出更大的抗性。这些结果表明在制剂过程中仔细考虑加工方法的重要性以及在CAMS中优化混合比例的重要性。