首页> 外文期刊>International Journal of Pharmaceutics >Design of sustained release fine particles using two-step mechanical powder processing: Particle shape modification of drug crystals and dry particle coating with polymer nanoparticle agglomerate
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Design of sustained release fine particles using two-step mechanical powder processing: Particle shape modification of drug crystals and dry particle coating with polymer nanoparticle agglomerate

机译:使用两步机械粉末处理设计缓释细颗粒:药物晶体的颗粒形状改性和聚合物纳米颗粒附聚物的干颗粒包衣

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摘要

We attempted to prepare sustained release fine particles using a two-step mechanical powder processing method; particle-shape modification and dry particle coating. First, particle shape of bulk drug was modified by mechanical treatment to yield drug crystals suitable for the coating process. Drug crystals became more rounded with increasing rotation speed, which demonstrates that powerful mechanical stress yields spherical drug crystals with narrow size distribution. This process is the result of destruction, granulation and refinement of drug crystals. Second, the modified drug particles and polymer coating powder were mechanically treated to prepare composite particles. Polymer nanoparticle agglomerate obtained by drying poly(meth)acrylate aqueous dispersion was used as a coating powder. The porous nanoparticle agglomerate has superior coating performance, because it is completely deagglomerated under mechanical stress to form fine fragments that act as guest particles. As a result, spherical drug crystals treated with porous agglomerate were effectively coated by poly(meth)acrylate powder, showing sustained release after curing. From these findings, particle-shape modification of drug crystals and dry particle coating with nanoparticle agglomerate using a mechanical powder processor is expected as an innovative technique for preparing controlled-release coated particles having high drug content and size smaller than 100 μm.
机译:我们尝试使用两步机械粉末加工方法制备缓释细颗粒;颗粒形状改性和干颗粒涂层。首先,通过机械处理改变原料药的颗粒形状,以产生适合于包衣过程的药物晶体。随着旋转速度的增加,药物晶体变得更加圆润,这表明强大的机械应力会产生尺寸分布狭窄的球形药物晶体。该过程是药物晶体破坏,造粒和精制的结果。其次,对改性药物颗粒和聚合物包衣粉进行机械处理以制备复合颗粒。通过干燥聚(甲基)丙烯酸酯水分散体获得的聚合物纳米颗粒附聚物用作涂料粉末。多孔纳米颗粒附聚物具有优异的涂覆性能,因为它在机械应力下完全解聚形成了用作客体颗粒的细小碎片。结果,用聚(甲基)丙烯酸酯粉末有效地涂覆了用多孔附聚物处理的球形药物晶体,显示出固化后的持续释放。从这些发现中,作为制备具有高药物含量和尺寸小于100μm的控释包衣颗粒的创新技术,有望实现药物晶体的颗粒形状改性和使用机械粉末处理器用纳米颗粒附聚物干燥颗粒包衣。

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