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Effect of Polymer Hydration on the Kinetic Release of Drugs: A Study of Ibuprofen and Ketoprofen in HPMC Matrices

机译:聚合物水合对药物动力学释放的影响:布洛芬和酮洛芬在HPMC基质中的研究

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摘要

Samples of drug/hydroxypropylmethylcellulose (HPMC) mixtures and matrices (drug/HPMC mixtures plus excipients) were allowed to equilibrate in closed chambers with defined relative humidities (RHs). Their water uptake and drug release were evaluated by differential scanning calorimetry/thermogravimetric analysis and dissolution studies, respectively. Analysis of the thermal behaviors of the drug/HPMC mixtures and of the polymer alone, as functions of RH, leads to the conclusion that most of the hydration water is retained by the polymer, and points to the occurrence of different types of hydration water, from the strongly polymer-bound water molecules at RH values up to 81%, to the almost “free water” for RH values close to 100%. In addition, application of the Korsmeyer model to the dissolution results leads to the conclusion that the rate determining dissolution processes are predominantly of the fickian type.
机译:使药物/羟丙基甲基纤维素(HPMC)混合物和基质(药物/ HPMC混合物加赋形剂)的样品在密闭的室内以规定的相对湿度(RH)平衡。分别通过差示扫描量热法/热重分析和溶出度研究评估了它们的吸水率和药物释放。对药物/ HPMC混合物和单独的聚合物的热行为进行分析(作为RH的函数)得出的结论是,大多数水合水被聚合物保留,并指出了不同类型的水合水的出现,从在RH值高达81%的与聚合物紧密结合的水分子到相对于RH值接近100%的几乎“游离水”。此外,将Korsmeyer模型应用于溶出度结果得出的结论是,决定溶出速度的速率主要是菲克类型的。

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