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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >The effect of wetting of powder mixture on the preparation of hydrophilic matrix granules with high-shear granulator
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The effect of wetting of powder mixture on the preparation of hydrophilic matrix granules with high-shear granulator

机译:粉末混合物的润湿对高剪切造粒机制备亲水性基质颗粒的影响

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摘要

The aim of our work was to determine the main factors which can influence the preparation of matrices and to choose the best parameters for the production of inert matrix granules with a high-shear granulator. Matrices were formulated, which contained hydroxypropyl methylcellulose (HPMC) as a matrix-forming agent, together with lactose monohydrate and microcrystalline cellulose as filler. There was a good correlation between the erosion time of the matrix comprimates and the water uptake of the different powder mixtures. The powder mixtures containing at least 40% of HPMC exhibited very similar properties to those of pure HPMC. Granules were prepared from the powder mixture with 30% of HPMC. The optimum amount of granulating fluid (water) was determined according to the quantity of the particles with optimum size. A 2~4 full factorial design was used to determine the operational parameters of the granulation for this composition. A significantly lower amount of waste was attained with a long spheronization time and slow dosing. The gel-forming properties of the HPMC, and hence the slower wettablity mean that the most important factors are those that affect the wettability of the powder mixture, and thus the factors which increase the time of wetting are relevant during the formulation of this matrix system. There was a relationship between the wetting of the powder mixture and forming of granules prepared with high-shear granulator.
机译:我们的工作目的是确定可能影响基质制备的主要因素,并为使用高剪切造粒机生产惰性基质颗粒选择最佳参数。配制了包含羟丙基甲基纤维素(HPMC)作为基质形成剂,乳糖一水合物和微晶纤维素作为填充剂的基质。基体的侵蚀时间与不同粉末混合物的吸水量之间具有良好的相关性。含有至少40%HPMC的粉末混合物表现出与纯HPMC非常相似的特性。由具有30%HPMC的粉末混合物制备颗粒。根据具有最佳尺寸的颗粒的量确定最佳的造粒液(水)的量。使用2〜4个全因子设计来确定该组合物的造粒操作参数。长时间的滚圆和缓慢的加药量可显着降低废物量。 HPMC的凝胶形成特性,以及因此较慢的润湿性意味着最重要的因素是影响粉末混合物润湿性的因素,因此,增加润湿时间的因素与该基质体系的配制有关。 。粉末混合物的润湿与用高剪切制粒机制备的颗粒的形成之间存在关系。

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