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采用新型粉末崩解方法对药物-赋形剂混合物的流动性特征进行描述。

Flowability characterisation of drug-excipient blends using a novel powder avalanching method.

机构信息

University of Applied Sciences Northwestern Switzerland, Muttenz, Switzerland.

出版信息

Eur J Pharm Biopharm. 2010 Feb;74(2):388-96. doi: 10.1016/j.ejpb.2009.09.010. Epub 2009 Sep 29.

Abstract

The scope of the work is twofold, first to introduce a new avalanche testing instrument and secondly to characterise flowability of pharmaceutical blends comprising of coarse and fine particles. The results were compared with established powder characterisation instruments like the angular shear cell and a flow through orifice tester. These different methods were applied to a broad concentration range of binary mixtures comprising coarse, well-flowing lactose and micronised, poorly flowing albendazole. Some of the mixtures were further analysed with scanning electron microscopy. The results showed clear changes in the flow behaviour of the mixtures that were considered as critical flow concentrations (CFCs). At least three drug concentrations were observed for which the flow behaviour essentially changed. Accordingly, different flow regions were identified, which were explained on the basis of changed particle packing configurations. A theoretical model successfully provided a first estimation of the initial two CFCs. In conclusion, the novel avalanche testing instrument provided complementary information to conventional flowability methodologies, and a thorough assessment of pharmaceutical blends is needed to avoid CFCs in view of a robust formulation development and hence with respect to building quality into the design of the solid dosage forms.

摘要

这项工作的范围有两方面,一是引入一种新的崩解测试仪器,二是研究包含粗颗粒和细颗粒的药物混合物的流动性特征。研究结果与现有的粉末特性仪器(如角剪切室和流通孔径测定仪)进行了比较。这些不同的方法应用于包含粗颗粒、流动性良好的乳糖和细颗粒、流动性差的阿苯达唑的广泛浓度范围的二元混合物。一些混合物还进行了扫描电子显微镜分析。结果表明,在被认为是临界流动浓度(CFC)的混合物中,其流动行为发生了明显的变化。对于至少三种药物浓度,其流动行为基本发生了变化。因此,确定了不同的流动区域,并基于改变的颗粒堆积构型对其进行了解释。理论模型成功地对最初的两个 CFC 进行了初步估计。总之,新型崩解测试仪器为常规流动性方法提供了补充信息,需要对药物混合物进行全面评估,以避免 CFC,从而为稳健的配方开发提供保障,进而在固体制剂的设计中构建质量。

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