...
首页> 外文期刊>Pharmaceutical research >Respirable low-density microparticles formed in situ from aerosolized brittle matrices.
【24h】

Respirable low-density microparticles formed in situ from aerosolized brittle matrices.

机译:由雾化的脆性基质原位形成的可吸入的低密度微粒。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Inhalation of low-density porous particles enables deep lung delivery with less dependence on device design and patient inspiration. The purpose of this study was to implement Thin Film Freezing (TFF) to investigate a novel approach to dry powder inhalation.Powders produced by TFF were evaluated for aerodynamic and geometric particle size by cascade impaction and laser light scattering, respectively. Density measurements were conducted according to USP methods and calculated using data from particle size measurements. Excipient inclusion and its effect on moisture sorption was measured by Dynamic Vapor Sorption (DVS).TFF-produced brittle matrix powders were sheared apart into respirable microparticles using a passive DPI device, producing fine particle fractions (FPF) up to 69% and mass median aerodynamic diameters (MMAD) as low as 2.6?μm. Particles had a mean geometric diameter ranging from 25?μm to 50?μm and mass densities of approximately 0.01?g/cm(3). Powders were susceptible to moisture-induced matrix collapse, capillary forces and electrostatic charging; although formulations containing mannitol or no sugar excipient proved to be more robust.Aerosolized brittle matrices produced by TFF may prove to be a useful platform for highly efficient pulmonary delivery of thermally labile, highly potent, and poorly soluble drugs.
机译:吸入低密度多孔颗粒可实现深肺递送,而对器械设计和患者吸气的依赖性较小。这项研究的目的是实施薄膜冷冻(TFF)研究一种吸入干粉的新方法。分别通过级联撞击和激光散射评估由TFF生产的粉末的空气动力学和几何粒径。密度测量根据USP方法进行,并使用粒度测量数据进行计算。通过动态蒸汽吸附(DVS)测量赋形剂的包合及其对水分吸收的影响。使用无源DPI装置将TFF生产的脆性基质粉末剪切成可吸入的微粒,产生高达69%和质量中位数的细颗粒级分(FPF)空气动力学直径(MMAD)低至2.6?μm。颗粒的平均几何直径为25?μm至50?μm,质量密度约为0.01μg/ cm(3)。粉末易受潮气引起的基质塌陷,毛细作用力和静电作用的影响。尽管事实证明含甘露醇或不含糖赋形剂的配方更健壮。TFF产生的雾化脆性基质可能被证明是有效地向肺部输送热不稳定,高效和难溶性药物的有用平台。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号