首页 / 院系成果 / 成果详情页

Composite particles based on particle engineering for direct compaction  期刊论文  

  • 编号:
    6bf3254b-978c-4ee4-9546-dbcb1667e5e7
  • 作者:
  • 语种:
    英文
  • 期刊:
    INTERNATIONAL JOURNAL OF PHARMACEUTICS ISSN:0378-5173 2017 年 519 卷 1-2 期 (272 - 286) ; MAR 15
  • 收录:
  • 关键词:
  • 摘要:

    Direct compaction (DC) is the preferred method for tablet production. However, only a minority of the active pharmaceutical ingredients (APIs) can be truly manufactured into tablets by DC so far due to that most of APIs lack sufficient functional properties required for DC. Particle engineering with co-processing provides a promising way to obtain various composite API and/or excipient particles with markedly improved functional properties, which makes successful tableting of them by DC possible. This review, as an informative update and supplement, covers the improvement of functional properties of composite API and/or excipient particles via co-processing based on recent developments and researches in the area of particle engineering for DC. The improved functionality of co-processed particles and corresponding mechanisms were summarized and discussed from the perspective of structure characteristics (Crystal level and Particle level) as the properties of particles are markedly affected by their structure. (C) 2017 Elsevier B.V. All rights reserved.

  • 推荐引用方式
    GB/T 7714:
    Li Zhe,Lin Xiao,Shen Lan, et al. Composite particles based on particle engineering for direct compaction [J].INTERNATIONAL JOURNAL OF PHARMACEUTICS,2017,519(1-2):272-286.
  • APA:
    Li Zhe,Lin Xiao,Shen Lan,Hong YanLong,&Feng Yi.(2017).Composite particles based on particle engineering for direct compaction .INTERNATIONAL JOURNAL OF PHARMACEUTICS,519(1-2):272-286.
  • MLA:
    Li Zhe, et al. "Composite particles based on particle engineering for direct compaction" .INTERNATIONAL JOURNAL OF PHARMACEUTICS 519,1-2(2017):272-286.
  • 条目包含文件:
    文件类型:PDF,文件大小:
    正在加载全文
浏览次数:45 下载次数:0
浏览次数:45
下载次数:0
打印次数:0
浏览器支持: Google Chrome   火狐   360浏览器极速模式(8.0+极速模式) 
返回顶部