药学学报2024,Vol.59Issue(3) :735-742.DOI:10.16438/j.0513-4870.2023-0831

载体材料类型对黄体酮固体分散体体外性质的影响

Effect of type of carrier material on the in vitro properties of solid dispersions of progesterone

权静楠 程艺 周静宇 李蒙 王增明 刘楠 赵子明 张慧 郑爱萍
药学学报2024,Vol.59Issue(3) :735-742.DOI:10.16438/j.0513-4870.2023-0831

载体材料类型对黄体酮固体分散体体外性质的影响

Effect of type of carrier material on the in vitro properties of solid dispersions of progesterone

权静楠 1程艺 2周静宇 2李蒙 2王增明 2刘楠 2赵子明 3张慧 2郑爱萍1
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作者信息

  • 1. 徐州医科大学药学院,江苏徐州 221004;军事科学院军事医学研究院毒物药物研究所,北京 100850
  • 2. 军事科学院军事医学研究院毒物药物研究所,北京 100850
  • 3. 徐州医科大学药学院,江苏徐州 221004
  • 折叠

摘要

本研究考察了不同载体材料对黄体酮固体分散体体外性质的影响,以流变学性质为考察指标,采用热熔挤出技术制备难溶性药物黄体酮固体分散体,并对固体分散体的体外性质进行表征.扫描电子显微镜显示固体分散体具有粗糙的表面和团聚的微观结构,呈不规则块状颗粒.差示扫描量热法和粉末X-射线衍射法显示固体分散体中黄体酮晶型的变化,由结晶态转变为无定型态.体外溶出度研究显示不同载体材料制备的固体分散体可以有效地改善药物的溶出速度.研究结果表明,载体材料类型对固体分散体的体外性质具有显著影响,为固体分散体在难溶性药物控释方面的研究提供了参考.

Abstract

This study investigated the effect of different carrier materials on the in vitro properties of progesterone solid dispersions.The solid dispersions of the insoluble drug progesterone were prepared by hot melt extrusion technique using theological properties as the index of investigation,and the in vitro properties of the solid disper-sions were characterized.Scanning electron microscope revealed solid dispersions with rough surfaces and agglomerated microstructures into irregular lumpy particles.Differential scanning calorimetry and powder X-ray diffraction showed the change of progesterone crystalline form in solid dispersions from crystalline to amorphous state.In vitro dissolution studies showed that solid dispersions prepared with different carrier materials can effectively improve the dissolution rate of drugs.The results of the study showed that the type of carrier material had a significant effect on the in vitro properties of solid dispersions,providing a reference for the study of solid dispersions in the controlled release of insoluble drugs.

关键词

黄体酮/热熔挤出/载体材料/固体分散体/溶出度

Key words

progesterone/hot melt extrusion/carrier material/solid dispersion/dissolution

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基金项目

国家重点研发计划(2023YFC2706100)

出版年

2024
药学学报
中国药学会 中国医学科学院药物研究所

药学学报

CSTPCD北大核心
影响因子:1.274
ISSN:0513-4870
参考文献量20
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