Badawy Sherif I Farag, Hussain Munir A
Bristol-Myers Squibb Pharmaceutical Research Institute, New Brunswick, NJ, USA.
AAPS PharmSciTech. 2004 May 11;5(3):e38. doi: 10.1208/pt050338.
The effect of anhydrous lactose particle size distribution on its performance in the wet granulation process was evaluated. Three grades of anhydrous lactose were used in the study: "as is" manufacturer grade and 2 particle size fractions obtained by screening of the 60M lactose. Particle growth behavior of the 3 lactose grades was evaluated in a high shear mixer. Compactibility and porosity of the resulting granules were also evaluated. A uniaxial compression test on moist agglomerates of the 3 lactose grades was performed in an attempt to explain the mechanism of particle size effect observed in the high shear mixer. Particle growth of anhydrous lactose in the high shear mixer was inversely related to the particle size of the starting material. In addition, granulation manufactured using the grade with the smallest particle size was more porous and demonstrated enhanced compactibility compared with the other grades. Compacts with similar porosity and low liquid saturation demonstrated brittle behavior and their breakage strength was inversely related to lactose particle size in the uniaxial compression test, suggesting that material with smaller particle size may exhibit more pronounced nucleation behavior during wet granulation. On the other hand, compacts prepared at higher liquid saturation and similar compression force exhibited more plastic behavior and showed lower yield stress for the grade with smallest particle size. The lower yield stress of compacts prepared with this grade may indicate a higher coalescence tendency for its granules during wet granulation.
评估了无水乳糖粒度分布对其在湿法制粒过程中性能的影响。本研究使用了三种等级的无水乳糖:“原样”制造商等级以及通过筛选60M乳糖获得的2种粒度级分。在高剪切混合器中评估了这三种乳糖等级的颗粒生长行为。还评估了所得颗粒的可压性和孔隙率。对这三种乳糖等级的湿团聚体进行了单轴压缩试验,以试图解释在高剪切混合器中观察到的粒度效应机制。无水乳糖在高剪切混合器中的颗粒生长与起始物料的粒度呈负相关。此外,与其他等级相比,使用最小粒度等级制造的颗粒更具多孔性且表现出增强的可压性。在单轴压缩试验中,具有相似孔隙率和低液体饱和度的压片表现出脆性,其破碎强度与乳糖粒度呈负相关,这表明粒度较小的物料在湿法制粒过程中可能表现出更明显的成核行为。另一方面,在较高液体饱和度和相似压缩力下制备的压片表现出更多的塑性行为,并且对于最小粒度等级的压片显示出较低的屈服应力。用该等级制备的压片较低的屈服应力可能表明其颗粒在湿法制粒过程中具有更高的聚结倾向。