Nieuwmeyer Florentine J S, van der Voort Maarschalk Kees, Vromans Herman
Department of Pharmaceutics, NV Organon, P.O. Box 20, 5340 BH Oss, The Netherlands.
Int J Pharm. 2007 Feb 1;329(1-2):81-7. doi: 10.1016/j.ijpharm.2006.08.017. Epub 2006 Aug 22.
The drying of wet granules often involves an unwanted and uncontrolled size reduction. Current FDA PAT guidance stresses importance of process control and understanding. The aim of this study is to determine and understand the breakage phenomena during drying processes in order to control these processes. High shear granulated lactose granules with water as binding liquid were dried during variable periods. Subsequently the (partially) dried granules were exposed to agitation by the impeller and chopper in the granulator. Granule characterization revealed that the change in granule size of (partially) dried granules is dependent on water content and follows a three phase system characterized by a growth, plateau and breakage phase. The derived yield stress of the granules is a function of velocity. From this it is concluded that in the plateau phase above minimum water content, stress behavior of granules can be described with Rumpfs' dynamic granule strength, whereas below minimum water content (breakage phase) granule strength is determined by the solid bridges. The extent and velocity of stress and water content of the granules during the process determine the size reduction phenomena.
湿颗粒的干燥过程常常伴随着不期望的、不受控制的颗粒尺寸减小。美国食品药品监督管理局(FDA)当前的过程分析技术(PAT)指南强调了过程控制和理解的重要性。本研究的目的是确定并理解干燥过程中的破碎现象,以便对这些过程进行控制。以水作为黏合剂的高剪切制粒乳糖颗粒在不同时间段进行干燥。随后,(部分)干燥后的颗粒在制粒机中受到叶轮和切碎机的搅拌作用。颗粒表征显示,(部分)干燥颗粒的尺寸变化取决于含水量,并呈现出一个三相体系,其特征为生长、平稳和破碎阶段。推导出的颗粒屈服应力是速度的函数。由此得出结论,在高于最低含水量的平稳阶段,颗粒的应力行为可用伦普夫斯(Rumpf)的动态颗粒强度来描述,而在低于最低含水量(破碎阶段)时,颗粒强度由固体桥接决定。过程中颗粒的应力程度、速度和含水量决定了颗粒尺寸减小现象。