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壳聚糖基智能生物材料在生物医学中的应用:进展与展望。

Chitosan-Based Smart Biomaterials for Biomedical Applications: Progress and Perspectives.

机构信息

Materials Science and Engineering Research Group, Faculty of Mechanical and Aerospace Engineering, Institut Teknologi Bandung, Jl. Ganesha 10, Bandung 40132, West Java, Indonesia.

Department of Physics, Faculty of Mathematics and Natural Sciences, IPB University, Jl. Meranti, Bogor 16680, West Java, Indonesia.

出版信息

ACS Biomater Sci Eng. 2023 Jun 12;9(6):3084-3115. doi: 10.1021/acsbiomaterials.3c00216. Epub 2023 May 13.

Abstract

Over the past decade, smart and functional biomaterials have escalated as one of the most rapidly emerging fields in the life sciences because the performance of biomaterials could be improved by careful consideration of their interaction and response with the living systems. Thus, chitosan could play a crucial role in this frontier field because it possesses many beneficial properties, especially in the biomedical field such as excellent biodegradability, hemostatic properties, antibacterial activity, antioxidant properties, biocompatibility, and low toxicity. Furthermore, chitosan is a smart and versatile biopolymer due to its polycationic nature with reactive functional groups that allow the polymer to form many interesting structures or to be modified in various ways to suit the targeted applications. In this review, we provide an up-to-date development of the versatile structures of chitosan-based smart biomaterials such as nanoparticles, hydrogels, nanofibers, and films, as well as their application in the biomedical field. This review also highlights several strategies to enhance biomaterial performance for fast growing fields in biomedical applications such as drug delivery systems, bone scaffolds, wound healing, and dentistry.

摘要

在过去的十年中,智能和功能生物材料已经成为生命科学中发展最快的领域之一,因为通过仔细考虑生物材料与生命系统的相互作用和响应,可以提高生物材料的性能。因此,壳聚糖在这个前沿领域可以发挥关键作用,因为它具有许多有益的特性,特别是在生物医学领域,如优异的可生物降解性、止血性能、抗菌活性、抗氧化性能、生物相容性和低毒性。此外,壳聚糖是一种智能且多功能的生物聚合物,因为其具有带反应性官能团的聚阳离子性质,允许聚合物形成许多有趣的结构,或以各种方式进行修饰以适应目标应用。在这篇综述中,我们提供了基于壳聚糖的智能生物材料的多功能结构的最新发展,如纳米粒子、水凝胶、纳米纤维和薄膜,以及它们在生物医学领域的应用。本文还强调了几种策略,以提高生物材料在生物医学应用中快速发展领域的性能,如药物输送系统、骨支架、伤口愈合和牙科。

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