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壳聚糖、壳聚糖衍生物及壳聚糖基纳米复合材料:用于先进应用的环保材料(综述)

Chitosan, chitosan derivatives, and chitosan-based nanocomposites: eco-friendly materials for advanced applications (a review).

作者信息

El-Araby Abir, Janati Walid, Ullah Riaz, Ercisli Sezai, Errachidi Faouzi

机构信息

Functional Ecology and Environment Engineering Laboratory, Faculty of Science and Technology, Sidi Mohamed Ben Abdellah University, Fez, Morocco.

Medicinal Aromatic and Poisonous Plants Research Centre, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia.

出版信息

Front Chem. 2024 Jan 4;11:1327426. doi: 10.3389/fchem.2023.1327426. eCollection 2023.

Abstract

For many years, chitosan has been widely regarded as a promising eco-friendly polymer thanks to its renewability, biocompatibility, biodegradability, non-toxicity, and ease of modification, giving it enormous potential for future development. As a cationic polysaccharide, chitosan exhibits specific physicochemical, biological, and mechanical properties that depend on factors such as its molecular weight and degree of deacetylation. Recently, there has been renewed interest surrounding chitosan derivatives and chitosan-based nanocomposites. This heightened attention is driven by the pursuit of enhancing efficiency and expanding the spectrum of chitosan applications. Chitosan's adaptability and unique properties make it a game-changer, promising significant contributions to industries ranging from healthcare to environmental remediation. This review presents an up-to-date overview of chitosan production sources and extraction methods, focusing on chitosan's physicochemical properties, including molecular weight, degree of deacetylation and solubility, as well as its antibacterial, antifungal and antioxidant activities. In addition, we highlight the advantages of chitosan derivatives and biopolymer modification methods, with recent advances in the preparation of chitosan-based nanocomposites. Finally, the versatile applications of chitosan, whether in its native state, derived or incorporated into nanocomposites in various fields, such as the food industry, agriculture, the cosmetics industry, the pharmaceutical industry, medicine, and wastewater treatment, were discussed.

摘要

多年来,壳聚糖因其可再生性、生物相容性、生物降解性、无毒性和易于改性,被广泛认为是一种很有前景的环保聚合物,具有巨大的未来发展潜力。作为一种阳离子多糖,壳聚糖表现出特定的物理化学、生物学和机械性能,这些性能取决于其分子量和脱乙酰度等因素。最近,人们对壳聚糖衍生物和基于壳聚糖的纳米复合材料重新产生了兴趣。这种关注度的提高是由提高效率和扩大壳聚糖应用范围的追求所驱动的。壳聚糖的适应性和独特性能使其成为一个变革者,有望为从医疗保健到环境修复等行业做出重大贡献。本综述对壳聚糖的生产来源和提取方法进行了最新概述,重点介绍了壳聚糖的物理化学性质,包括分子量、脱乙酰度和溶解度,以及其抗菌、抗真菌和抗氧化活性。此外,我们强调了壳聚糖衍生物和生物聚合物改性方法的优势,以及基于壳聚糖的纳米复合材料制备的最新进展。最后,讨论了壳聚糖的多种应用,无论是其天然状态、衍生物还是在各种领域(如食品工业、农业、化妆品工业、制药工业、医学和废水处理)中纳入纳米复合材料的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa60/10794439/b9ce0b65a7d1/fchem-11-1327426-g001.jpg

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