Li Qin, Rudolph Victor, Weigl Bernhard, Earl Alan
Chemical Engineering Division, University of Queensland, St Lucia, Brisbane, Qld 4072, Australia.
Int J Pharm. 2004 Aug 6;280(1-2):77-93. doi: 10.1016/j.ijpharm.2004.05.001.
Particle flowability and compactibility are the two critical process parameters tested when a pharmaceutical material is formulated for a tabletting process. These behavioral descriptions are strongly affected by geometrical, physical, chemical and mechanical particle properties, as well as operational conditions. The property influences are broadly known in a qualitative sense, but have largely escaped fundamental quantitative description. Various measurement methods have been separately developed for each of these properties which provide comparative indices to assist in process and formulation design. This paper seeks to establish the connections between interparticle van der Waals force and both flowability and compactibility, and therefore also the inter-relations between the two apparently distinct properties. Paracetamol and the excipients often associated with it for tabletting are used as test materials to provide an initial validation of the theoretical development. These powders are well-characterized and known to be particularly difficult with respect to flowability and compactibility.
当一种药物原料被用于压片工艺时,颗粒流动性和可压性是两个关键的工艺参数。这些行为描述会受到颗粒的几何、物理、化学和机械性质以及操作条件的强烈影响。从定性的角度来看,这些性质的影响是广为人知的,但在很大程度上仍缺乏基本的定量描述。针对这些性质中的每一种都分别开发了各种测量方法,这些方法提供了比较指标,以协助工艺和配方设计。本文旨在建立颗粒间范德华力与流动性和可压性之间的联系,从而也建立这两个明显不同的性质之间的相互关系。对乙酰氨基酚及其压片时常用的辅料用作测试材料,以对理论发展进行初步验证。这些粉末具有良好的特性,并且已知在流动性和可压性方面特别困难。