Pharmaceutical Science & Technology Labs., Astellas Pharma Inc., 21 Miyukigaoka, Tsukuba, Ibaraki 305-8585, Japan.
Pharmaceutical Science & Technology Labs., Astellas Pharma Inc., 21 Miyukigaoka, Tsukuba, Ibaraki 305-8585, Japan.
Int J Pharm. 2022 Oct 15;626:122158. doi: 10.1016/j.ijpharm.2022.122158. Epub 2022 Sep 2.
Amorphization is a powerful approach for improving the aqueous solubility and bioavailability of poorly water-soluble compounds. However, it can cause chemical and physical instability, the latter of which can lead to crystallization during storage, diminishing the solubility advantage of the amorphous state. As there is no standard method for predicting the physical stability of amorphous materials, a long-term stability study is needed in drug development. This study investigated the correlation between the physical stability of amorphous compounds and molecular mobility based on the assumption that physical stability is governed by the diffusional motion of a molecule. Model compounds were evaluated for crystallization onset time, structural relaxation time, fragility, and fictive temperature. The crystallization onset time of acetaminophen glass correlated with its relaxation time calculated from the Adam-Gibbs-Vogel equation; however, that of felodipine glass correlated with the relaxation time calculated from the Vogel-Tammann-Fulcher equation. The different crystallization tendencies of these compounds can be explained by the differences in the rate limiting steps in their crystallization processes, indicating the importance of distinguishing the critical process associated with crystallization. These findings will be useful for more accurate prediction of long-term physical stability of amorphous materials.
无定形化是提高水溶性差的化合物的水溶性和生物利用度的有效方法。然而,它会导致化学和物理不稳定性,后者可能导致在储存过程中结晶,从而降低无定形状态的溶解度优势。由于没有预测无定形材料物理稳定性的标准方法,因此在药物开发中需要进行长期稳定性研究。本研究基于物理稳定性受分子扩散运动控制的假设,考察了无定形化合物的物理稳定性与分子迁移率之间的相关性。对模型化合物的结晶起始时间、结构弛豫时间、脆性和虚拟温度进行了评估。扑热息痛玻璃的结晶起始时间与其根据 Adam-Gibbs-Vogel 方程计算的弛豫时间相关;然而,非洛地平玻璃的结晶起始时间与其根据 Vogel-Tammann-Fulcher 方程计算的弛豫时间相关。这些化合物的不同结晶趋势可以用它们的结晶过程中限速步骤的差异来解释,表明区分与结晶相关的关键过程的重要性。这些发现将有助于更准确地预测无定形材料的长期物理稳定性。