用不同的无形化方法制备的基托-聚乙烯-皮罗立固体分散物的分子结构
Stephen K Wilke1,2, Chris J Benmore2, Vrishank Menon1
1Materials Development, Inc. Evanston 825 Chicago Ave IL 60202 USA swilke@matsdev.com.
RSC pharmaceutics
|April 22, 2024
概括
处理方法显著影响无形固体分散 (ASD) 的分子结构和稳定性. 射线散射揭示了基于无形化技术的不同分子混合,这对于药物的生物可用性至关重要.
科学领域:
- 材料科学 材料科学 材料科学
- 制药科学 制药科学
- 物理化学 物理化学
背景情况:
- 无形固体分散 (ASD) 增强水溶性较差的药物的生物可用性.
- 了解处理方法对ASD分子结构的影响是有限的.
研究的目的:
- 调查不同的无形化技术如何影响烯/聚乙烯罗利 (KTP/PVP) ASD 的分子结构.
- 为了比较通过各种方法制备的ASD的分子混合和稳定性.
主要方法:
- 使用五种技术制备KTP/PVP ASD:融灭,旋转蒸发,喷雾干燥和声学悬浮 (预混合和共同喷雾的溶液).
- 使用高能X射线总散射进行ASD的结构分析.
- 对比X射线对分布函数和结构因子.
主要成果:
- 在大多数相同组成的ASD中,分子内部结构是相似的.
- X射线结构因子揭示了不同程度的分子混合,这取决于无形化路线.
- 融灭,喷雾干燥和预混合悬浮显示了一些分子混合;联合喷雾的悬浮导致了类似于物理混合物的结构.
结论:
- 处理方法显然影响ASD中的分子排列和混合.
- 在X射线总散射是有效的对比不同技术产生的无形形态的形式.
- 分子混合的程度与ASDs对结晶的稳定性相关.
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