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用于药物输送和组织工程的互穿聚合物网络多糖水凝胶。

Interpenetrating Polymer Networks polysaccharide hydrogels for drug delivery and tissue engineering.

机构信息

Department of Drug Chemistry and Technologies, "Sapienza" University of Rome, Piazzale Aldo Moro 5, 00185 Rome, Italy.

出版信息

Adv Drug Deliv Rev. 2013 Aug;65(9):1172-87. doi: 10.1016/j.addr.2013.04.002. Epub 2013 Apr 17.

Abstract

The ever increasing improvements of pharmaceutical formulations have been often obtained by means of the use of hydrogels. In particular, environmentally sensitive hydrogels have been investigated as "smart" delivery systems capable to release, at the appropriate time and site of action, entrapped drugs in response to specific physiological triggers. At the same time the progress in the tissue engineering research area was possible because of significant innovations in the field of hydrogels. In recent years multicomponent hydrogels, such as semi-Interpenetrating Polymer Networks (semi-IPNs) and Interpenetrating Polymer Networks (IPNs) have emerged as innovative biomaterials for drug delivery and as scaffolds for tissue engineering. These interpenetrated hydrogel networks, which can be obtained by either chemical or physical crosslinking, in most cases show physico-chemical properties that can remarkably differ from those of the macromolecular constituents. Among the synthetic and natural polymers that have been used for the preparation of semi-IPNs and IPNs, polysaccharides represent a class of macromolecules of particular interest because they are usually abundant, available from renewable sources and have a large variety of composition and properties that may allow appropriately tailored chemical modifications. Sometimes both macromolecular systems are based on polysaccharides but often also synthetic polymers are present together with polysaccharide chains. The description and discussion of (semi)-IPNs reported here, will allow to acquire a better understanding of the potential and wide range of applications of IPN polysaccharide hydrogels. A quite large number of polysaccharides have been investigated for the design of (semi)-IPNs for drug delivery and tissue engineering applications. This review article however mainly focuses on two of the most studied polysaccharide-based (semi)-IPNs, namely those obtained using alginate and hyaluronic acid. An overview of the methods of preparation, the properties, the performances as drug delivery systems and as scaffolds for tissue engineering, of (semi)-IPNs obtained using these two polysaccharides and their derivatives, will be given.

摘要

药物制剂的不断进步通常是通过使用水凝胶来实现的。特别是,环境敏感水凝胶已被研究为“智能”递送系统,能够响应特定的生理触发,在适当的时间和作用部位释放包封的药物。与此同时,组织工程研究领域的进展成为可能,这要归功于水凝胶领域的重大创新。近年来,多组分水凝胶(如半互穿聚合物网络(semi-IPNs)和互穿聚合物网络(IPNs))已成为用于药物输送的创新生物材料和组织工程支架。这些互穿水凝胶网络可以通过化学交联或物理交联获得,在大多数情况下,其物理化学性质与大分子成分显著不同。在用于制备半互穿聚合物网络和互穿聚合物网络的合成和天然聚合物中,多糖是一类特别引人关注的大分子,因为它们通常丰富、可从可再生资源获得,并且具有多种组成和性质,可以进行适当的化学修饰。有时,两种高分子体系都基于多糖,但通常也存在与多糖链一起的合成聚合物。这里报道的(半)互穿聚合物网络的描述和讨论将有助于更好地理解互穿聚合物网络多糖水凝胶的潜力和广泛应用。已经研究了相当多的多糖来设计用于药物输送和组织工程应用的(半)互穿聚合物网络。然而,这篇综述文章主要关注两种研究最多的基于多糖的(半)互穿聚合物网络,即使用藻酸盐和透明质酸获得的那些。将概述使用这两种多糖及其衍生物制备、性质、作为药物输送系统和组织工程支架的性能的(半)互穿聚合物网络。

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