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Physicochemical Properties of Poly-vinyl Polymers and Their Influence on Ketoprofen Amorphous Solid Dispersion Performance: A Polymer Selection Case Study

机译:聚乙烯基聚合物的理化性质及其对酮洛芬无定形固体分散性能的影响:聚合物选择案例研究

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摘要

When developing an amorphous solid dispersion (ASD), a prudent choice of polymer is critical to several aspects of ASD performance including: processability, solid state stability and dissolution rate. However, there is little guidance available to formulators to aid judicious polymer selection and a “trial and error” approach is often taken. This study aims to facilitate rational polymer selection and formulation design by generating ASDs using a range of poly-vinyl polymers and ketoprofen as a model active pharmaceutical ingredient (API) and evaluating several aspects of their performance. The molecular weight of the polymer and the ratio of vinyl pyrrolidone to vinyl acetate in the polymer were found to influence the relative humidity at which the relative humidity induced glass transition occurred, as well as the extent of ketoprofen supersaturation achieved during dynamic solubility testing. Interestingly, ASD tablets containing polymers with the vinyl pyrrolidone functional group exhibited higher tensile strengths than those without. This points towards the binder functionality of vinyl pyrrolidone. In conclusion, the physicochemical properties of poly-vinyl polymers greatly influence ketoprofen ASD performance and due regard should be paid to these properties in order to develop an ASD with the desired attributes.
机译:在开发无定形固体分散体(ASD)时,谨慎选择聚合物对ASD性能的几个方面至关重要,包括:可加工性,固态稳定性和溶解速率。然而,对于配方设计师而言,几乎没有指导可用于帮助明智地选择聚合物,并且经常采用“尝试和错误”的方法。这项研究旨在通过使用一系列聚乙烯聚合物和酮洛芬作为模型活性药物成分(API)生成ASD并评估其性能的多个方面,促进合理的聚合物选择和配方设计。发现聚合物的分子量和聚合物中乙烯基吡咯烷酮与乙酸乙烯酯的比率影响发生相对湿度引起的玻璃化转变的相对湿度,以及在动态溶解度测试过程中酮洛芬过饱和的程度。有趣的是,含有具有乙烯基吡咯烷酮官能团的聚合物的ASD片剂的抗张强度要高于不具有乙烯基吡咯烷酮官能团的聚合物。这指向乙烯基吡咯烷酮的粘合剂官能度。总之,聚乙烯基聚合物的物理化学性质极大地影响了酮洛芬ASD的性能,应适当考虑这些性质,以开发具有所需属性的ASD。

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