Amorphous solid dispersions (ASDs) are often used for formulating poorly water-soluble active pharmaceutical ingredients (APIs). In an ASD, the amorphous API is embedded in a suitable matrix excipient in order to stabilize the amorphous state and control the dissolution performance. ASDs can be prepared by commonly dissolving the API and the polymer in a suitable organic solvent which is evaporated afterward (e.g., via spray drying) aiming at a homogeneous API distribution in the polymer matrix. Sometimes, unexpected solvent influences on the heterogeneity of the dry ASD are observed. Thermodynamic predictions using the Perturbed-Chain Statistical Associating Fluid Theory combined with experimental investigations via Raman spectroscopy, differential scanning calorimetry, and microscopy performed in this work revealed the amorphous phase separation (APS) between the solvent and the polymer as causing the ASD heterogeneities. It will be shown that thermodynamic modeling allows for identifying appropriate solvents that will neither show APS with the polymeric excipient nor at any time of the drying process of ASD formulations.

译文

无定形固体分散体 (asd) 通常用于配制水溶性差的活性药物成分 (api)。在ASD中,将无定形API嵌入合适的基质赋形剂中,以稳定无定形状态并控制溶解性能。ASDs可以通过通常将API和聚合物溶解在合适的有机溶剂中制备,所述有机溶剂随后 (例如,通过喷雾干燥) 蒸发,以使API在聚合物基质中均匀分布。有时,会观察到意外的溶剂对干燥ASD的异质性的影响。使用扰动链统计关联流体理论进行的热力学预测,结合拉曼光谱,差示扫描量热法和显微镜的实验研究,在这项工作中进行了研究,揭示了溶剂和聚合物之间的非晶相分离 (APS) 导致ASD异质性。将表明,热力学模型允许鉴定合适的溶剂,这些溶剂既不会显示带有聚合物赋形剂的APS,也不会在ASD制剂的干燥过程的任何时间显示APS。

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