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Prediction of the thermal phase diagram of amorphous solid dispersions by Flory-Huggins theory.

机译:用Flory-Huggins理论预测非晶态固体分散体的热相图。

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Miscibility of drug and polymer is one of the key parameters in amorphous formulation design. The purpose of this work is to provide a theoretical approach to evaluate miscibility between drug and polymer in amorphous solid dispersions. The model system is indomethacin and polyvinylpyrrolidone-vinyl acetate copolymer. The Flory-Huggins (F-H) interaction parameter, chi, of drug and polymer was estimated at different temperatures by two methods: melting point depression of drug in various polymer ratios at the melting temperature, and Hildebrand and Scott solubility parameter calculation at 25 degrees C. The simplified first-order relation between the F-H interaction parameter and temperature was established. This allows the construction of a temperature-composition phase diagram of a two-component amorphous system. The spinodal curve was generated and provides an insight into the thermodynamic stability of an amorphous solid dispersion at various temperatures. The predicted stability of the model system was compared with the experimental data. The merits and deficiency of the proposed approach were fully discussed.
机译:药物和聚合物的混溶性是无定形制剂设计中的关键参数之一。这项工作的目的是提供一种评估非晶态固体分散体中药物与聚合物之间混溶性的理论方法。模型系统是消炎痛和聚乙烯吡咯烷酮-乙酸乙烯酯共聚物。通过两种方法在不同温度下估算药物和聚合物的Flory-Huggins(FH)相互作用参数chi:在熔点温度下以不同聚合物比例降低药物的熔点,并在25摄氏度下计算Hildebrand和Scott溶解度参数建立了FH相互作用参数和温度之间的简化一阶关系。这允许构造两组分非晶态系统的温度组成相图。产生了旋节线曲线,它提供了无定形固体分散体在各种温度下的热力学稳定性的见解。将模型系统的预测稳定性与实验数据进行了比较。充分讨论了该方法的优缺点。

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