Laboratory of Integrated Bioprocessing, School of Biotechnology, Dublin City University, Glasnevin, Dublin, Ireland.
J Microencapsul. 2011;28(8):669-88. doi: 10.3109/02652048.2011.586068. Epub 2011 Nov 2.
For over a half a century now, microencapsulation has played a very important role in many industries and in the recent decades, this versatile technology has been applied to numerous biotechnology and medical processes. However, successful application in these areas requires a methodology which has the capability to produce mono-dispersed, homogenous-shaped capsules, with a narrow size distribution, using a short production time. The manufacture of capsules using vibrating technology has gained significant interest mainly due to its simplistic approach to produce homogenous microcapsules with the desired characteristics for biotechnological and medical processes. However, certain limitations still exist for this methodology, which include the inability to manufacture microcapsules at large quantities and/or using highly viscous polymers. In this review, a detailed description of the theoretical and practical aspects behind the production of different types of alginate-based microcapsules, for application in biotechnological and medical processes, using vibrating technology, is given.
半个多世纪以来,微胶囊技术在许多行业中发挥了非常重要的作用,在最近几十年,这项多功能技术已应用于许多生物技术和医疗过程。然而,在这些领域的成功应用需要一种能够生产单分散、同形、粒度分布窄、生产时间短的胶囊的方法。振动技术制造胶囊因其生产具有生物技术和医疗过程所需特性的均匀微胶囊的简单方法而引起了极大的兴趣。然而,这种方法仍然存在某些限制,包括无法大量制造微胶囊和/或使用高粘性聚合物。在这篇综述中,详细描述了使用振动技术生产不同类型的基于海藻酸盐的微胶囊的理论和实际方面,这些微胶囊可应用于生物技术和医疗过程。