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Analysis of the moisture sorption behavior of amorphous drug-polymer blends

机译:非晶态药物-聚合物共混物的吸湿性能分析

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Hydrophobic drugs are often formulated with hydrophilic polymers to form miscible blends called amorphous solid dispersions. The interaction of moisture with these blends is an important topic, both from stability as well as processing perspectives. In this study, the moisture sorption profiles of four different drug-polymer blends, [felodipine-poly(vinylpyrrolidone) (PVP), indo-methacin-PVP, felodipine-hypromellose (HPMC), and felodipine-hypromellose acetate succinate (HPMCAS)] were experimentally determined at 25° C, and analyzed using various mathematical models. It was found that the moisture sorption profiles of the drug-polymer blends could not be reconstructed using the weight-averaged sum of the moisture sorbed by each of the components. Application of the Flory-Huggins model for ternary systems to extract drug-polymer interaction parameter (χ23) values using known values of water-drug and water-polymer interaction parameters led to ambiguous conclusions about the systems' thermodynamics. χ23 values extracted for felodipine-PVP and indomethacin-PVP using this model ranged from -9.6 to 26.9 and -20.4 to 22.0, respectively. It is thought that the presence of specific drug-polymer interactions changed the water-drug and the water-polymer interactions in the system. Combined with the mathematically small contribution from the term encompassing χ23 to the predicted amount of moisture sorbed by the drug-polymer blends, it was concluded that this method cannot be used to unambiguously determine drug-polymer interaction parameters in solid dispersions. Instead, a model with a mean interaction parameter (χ1,23) that considers the drug and the polymer in the blend as a single unit was found to better describe the changing affinity of water for the solid matrix with a change in composition or polymer type.
机译:疏水性药物通常与亲水性聚合物一起配制,以形成称为无定形固体分散体的可混溶共混物。从稳定性和加工角度来看,水分与这些共混物的相互作用都是重要的话题。在这项研究中,四种不同的药物-聚合物混合物,[非洛地平-聚(乙烯基吡咯烷酮)(PVP),吲哚美辛-PVP,非洛地平-羟丙甲纤维素(HPMC)和非洛地平-羟丙甲纤维素乙酸琥珀酸酯(HPMCAS)]的吸湿特性在25°C下通过实验确定,并使用各种数学模型进行分析。已经发现,使用每一种组分所吸收的水分的重量平均和不能重建药物-聚合物共混物的水分吸收曲线。使用三元系统的Flory-Huggins模型使用已知的水-药物和水-聚合物相互作用参数值提取药物-聚合物相互作用参数(χ23)值得出了关于系统热力学的模糊结论。使用该模型提取的非洛地平-PVP和消炎痛-PVP的χ23值分别在-9.6至26.9和-20.4至22.0范围内。据认为,特定药物-聚合物相互作用的存在改变了系统中的水-药物和水-聚合物相互作用。结合术语“包含χ23”对药物-聚合物共混物所吸收的预计水分含量的数学贡献,得出结论,该方法不能用于确定固体分散体中的药物-聚合物相互作用参数。取而代之的是,发现具有平均相互作用参数(χ1,23)的模型,该模型将药物和共混物中的聚合物视为单个单元,可以更好地描述水对固体基质的亲和力随组成或聚合物类型的变化而变化。

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