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首页> 外文期刊>International Journal of Pharmaceutics >The role of the screw profile on granular structure and mixing efficiency of a high-dose hydrophobic drug formulation during twin screw wet granulation
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The role of the screw profile on granular structure and mixing efficiency of a high-dose hydrophobic drug formulation during twin screw wet granulation

机译:螺杆轮廓对双螺杆湿造粒期间高剂量疏水药物制剂的颗粒结构和混合效率的作用

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摘要

This study aimed at systematically investigating the role of distributive comb mixing element (GLC) and neutral dispersive mixing kneading block element (K90) on the structure and physical properties of granules containing high-dose of poorly water-soluble drug. Albendazole was used as the model drug at 50 wt% drug loading. Lactose monohydrate and microcrystalline cellulose were used as diluent, and 3 w/v% hydroxypropyl cellulose aqueous solution was used as binder liquid. It was found that the use of GLC element resulted in formation of granules with higher internal porosity, more homogeneous binder distribution, smaller particle size, superior compaction properties and tabletability while K90 kneading element produced relatively larger and denser granules with less homogeneous binder distribution where binder was mainly concentrated in larger granules. The use of downstream GLC element was shown to result in an approximately 8% and 57% reduction in the D-50 for 0.2 and 0.3 liquid-to-solid ratios, demonstrating a significantly higher sensitivity of granule size to screw profile at higher liquid-to-solid ratios. The axial mixing efficiency was assessed by measuring the residence time distribution of the granulation process with screw profiles containing K90 and GLC elements. It was found that granules had longer mean residence time and broader residence time distribution within GLC element due to enhanced backmixing and axial dispersion processes. The continuous "fragmentation-reagglomeration" cycle was proposed to be the main advantage of distributive GLC element in granulation of hydrophobic powders.
机译:该研究旨在系统地研究分布梳状混合元件(GLC)和中性色散混合捏合块元件(K90)对含有高剂量不良水溶性药物的颗粒的结构和物理性质的作用。 Albendazole用作50wt%药物载荷的模型药物。使用乳糖一水合物和微晶纤维素作为稀释剂,并使用3W / V%羟丙基纤维素水溶液作为粘合剂液体。结果发现,GLC元素的使用导致颗粒形成具有更高的内部孔隙率,更均匀的粘合剂分布,较小的粒度,更优异的压制性和压缩性,而K90捏合元件产生相对较大和更密集的颗粒,粘合剂的均匀粘合剂分布较少主要集中在较大的颗粒中。显示下游Glc元件的使用导致D-50的约8%和57%,液到固体比率为0.2和0.3次液体比率,呈现出颗粒尺寸的显着较高,以在较高液体下螺纹致稳定比率。通过用含有K90和GLC元件的螺杆型材测量造粒过程的停留时间分布来评估轴向混合效率。发现由于增强的后晶和轴向分散过程,颗粒具有更长的平均停留时间和GLC元件内的较宽停留时间分布。提出了连续的“碎片 - 再阵”循环是分布Glc元件在疏水性粉末造粒中的主要优点。

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