Kawakami Kohsaku
World Premier International Research Center for Materials Nanoarchitectonics (WPI-MANA), National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan.
Pharmaceutics. 2019 May 1;11(5):202. doi: 10.3390/pharmaceutics11050202.
Amorphous solid dispersions (ASDs) are important formulation strategies for improving the dissolution process and oral bioavailability of poorly soluble drugs. Physical stability of a candidate drug must be clearly understood to design ASDs with superior properties. The crystallization tendency of small organics is frequently estimated by applying rapid cooling or a cooling/reheating cycle to their melt using differential scanning calorimetry. The crystallization tendency determined in this way does not directly correlate with the physical stability during isothermal storage, which is of great interest to pharmaceutical researchers. Nevertheless, it provides important insights into strategy for the formulation design and the crystallization mechanism of the drug molecules. The initiation time for isothermal crystallization can be explained using the ratio of the glass transition and storage temperatures (/). Although some formulation processes such as milling and compaction can enhance nucleation, the / ratio still works for roughly predicting the crystallization behavior. Thus, design of accelerated physical stability test may be possible for ASDs. The crystallization tendency during the formulation process and the supersaturation ability of ASDs may also be related to the crystallization tendency determined by thermal analysis. In this review, the assessment of the crystallization tendency of pharmaceutical glasses and its relevance to developmental studies of ASDs are discussed.
无定形固体分散体(ASDs)是改善难溶性药物溶解过程和口服生物利用度的重要制剂策略。为了设计出具有优异性能的ASDs,必须清楚了解候选药物的物理稳定性。通过差示扫描量热法对小分子有机物的熔体进行快速冷却或冷却/再加热循环,经常可以估算出其结晶倾向。以这种方式确定的结晶倾向与等温储存期间的物理稳定性没有直接关联,而等温储存期间的物理稳定性是药物研究人员非常感兴趣的。然而,它为制剂设计策略和药物分子的结晶机制提供了重要的见解。等温结晶的起始时间可以用玻璃化转变温度与储存温度之比(Tg/T)来解释。虽然一些制剂工艺如研磨和压片可以增强成核作用,但Tg/T比仍可用于大致预测结晶行为。因此,对于ASDs,可能可以设计加速物理稳定性试验。制剂过程中的结晶倾向和ASDs的过饱和能力也可能与热分析确定的结晶倾向有关。在这篇综述中,讨论了药物玻璃结晶倾向的评估及其与ASDs研发研究的相关性。