National University of Singapore, Department of Pharmacy, Faculty of Science, Block S4, 18 Science Drive 4, 117543, Singapore.
Expert Opin Drug Deliv. 2011 Dec;8(12):1645-61. doi: 10.1517/17425247.2011.610304.
Granulation is a key unit process in the production of pharmaceutical solid dosage forms and involves the agglomeration of fine particles with the aid of a binding agent. Fluidized bed granulation, a classic example of spray granulation, is a technique of particle agglomeration brought about by the spray addition of the binding liquid onto a stationary bed of powder particles that is transformed to a fluid-like state by the passage of air through it.
The basic working principles, equipment set-up, advantages and challenges of fluidized bed granulation are introduced in this review. This is followed by an overview of the formulation and process-related variables affecting granulation performance. Technological advances, particularly in the application of process analytical tools, in the field of fluidized bed granulation research are also discussed.
Fluidized bed granulation is a popular technique for pharmaceutical production, as it is a highly economical and efficient one-pot process. The research and development of process analytical technologies (PAT) has allowed greater process understanding and control to be achieved, even for the lesser known fluidized bed techniques, such as bottom spray and fluidized hot melt granulation. In view of its consistent mixing, as well as continuous and concurrent wetting and drying occurring throughout processing, fluidized bed granulation shows great potential for continuous production although more research is required to fully implement, validate and integrate the PAT tools in a production line.
造粒是药物固体制剂生产中的关键单元操作,涉及在粘结剂的帮助下使细颗粒团聚。流化床造粒是喷雾造粒的一个典型例子,是一种通过将粘结液体喷雾到固定的粉末床上来实现颗粒团聚的技术,空气通过粉末床将其转变为类似流体的状态。
本文介绍了流化床造粒的基本工作原理、设备设置、优点和挑战。接下来概述了影响造粒性能的制剂和工艺相关变量。还讨论了流化床造粒研究领域的技术进步,特别是在过程分析工具的应用方面。
流化床造粒是一种流行的制药生产技术,因为它是一种经济高效的一锅法工艺。过程分析技术(PAT)的研究和开发使人们对工艺有了更好的理解和控制,即使是对不太知名的流化床技术,如底部喷雾和流化床热熔造粒也是如此。鉴于流化床造粒在整个加工过程中持续混合,以及连续同时进行的润湿和干燥,它显示出了在连续生产方面的巨大潜力,尽管需要进一步的研究来充分实施、验证和整合生产线中的 PAT 工具。