Malafaya Patrícia B, Silva Gabriela A, Reis Rui L
3B's Research Group, Biomaterials, Biodegradables and Biomimetics, Department of Polymer Engineering, University of Minho, Campus de Gualtar, Braga, Portugal.
Adv Drug Deliv Rev. 2007 May 30;59(4-5):207-33. doi: 10.1016/j.addr.2007.03.012. Epub 2007 Apr 6.
The present paper intends to overview a wide range of natural-origin polymers with special focus on proteins and polysaccharides (the systems more inspired on the extracellular matrix) that are being used in research, or might be potentially useful as carriers systems for active biomolecules or as cell carriers with application in the tissue engineering field targeting several biological tissues. The combination of both applications into a single material has proven to be very challenging though. The paper presents also some examples of commercially available natural-origin polymers with applications in research or in clinical use in several applications. As it is recognized, this class of polymers is being widely used due to their similarities with the extracellular matrix, high chemical versatility, typically good biological performance and inherent cellular interaction and, also very significant, the cell or enzyme-controlled degradability. These biocharacteristics classify the natural-origin polymers as one of the most attractive options to be used in the tissue engineering field and drug delivery applications.
本文旨在概述多种天然来源的聚合物,特别关注蛋白质和多糖(这些系统更受细胞外基质的启发),它们正在用于研究,或者有可能作为活性生物分子的载体系统,或作为细胞载体应用于组织工程领域,针对多种生物组织。然而,将这两种应用结合到单一材料中已被证明极具挑战性。本文还介绍了一些在研究或临床应用中有多种用途的市售天然来源聚合物的例子。众所周知,这类聚合物因其与细胞外基质的相似性、高化学多功能性、通常良好的生物学性能和固有的细胞相互作用,以及非常重要的细胞或酶控制的可降解性而被广泛使用。这些生物特性将天然来源的聚合物归类为组织工程领域和药物递送应用中最具吸引力的选择之一。