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改性壳聚糖衍生物的合成、性质及应用的最新进展:挑战与机遇

Recent Advances in the Synthesis, Properties, and Applications of Modified Chitosan Derivatives: Challenges and Opportunities.

作者信息

Boominathan T, Sivaramakrishna Akella

机构信息

Department of Chemistry, School of Advanced Sciences, Vellore Institute of Technology (VIT), Vellore, Tamil Nadu, 632014, India.

出版信息

Top Curr Chem (Cham). 2021 Apr 8;379(3):19. doi: 10.1007/s41061-021-00331-z.

Abstract

Chitosan is a very well-known biocompatible and biodegradable polysaccharide consisting of β-(1-4)-linked glucosamine units, derived from the deacetylation of chitin. This unique biopolymer consists of primary amines as well as hydrophilic hydroxyl groups along with the chitosan backbone and has exceptional properties and wide applications. Numerous articles have been devoted to the preparation and properties of chitosan-based biomaterials, which have been demonstrated as beads, films, fibers (2D-scaffolds), gels, sponges (3D-scaffolds), and wound-healing materials. The unusual adsorption capacity of chitosan cross-linked polymer is demonstrated by trapping cations, anions, organic dyes, and pharmaceutical ingredients from wastewater. The most striking manifestations of flexibility in the preparation of these adsorbents have been critically reviewed, and their sorption efficiencies compared. Notably, these materials are also used as drug delivery carriers. Further, various metal-loaded chitosan-based nanocomposite materials have been used efficiently in organic catalytic reactions. As per the rich literature survey, such chitosan-based materials warrant further research due to their abundance, eco-friendliness, and effectiveness towards commercialization. The biotechnological aspects of chitosan may lead to promising low-cost materials and by-products of industrial and agricultural significance. The constant demand for potential adsorbents for the removal of pollutants, can be met by fine-tuning the structural properties of chitosan with appropriate cross-linkers or additives.

摘要

壳聚糖是一种广为人知的具有生物相容性和可生物降解性的多糖,由β-(1-4)-连接的葡萄糖胺单元组成,来源于几丁质的脱乙酰作用。这种独特的生物聚合物在其主链上含有伯胺以及亲水性羟基,具有卓越的性能和广泛的应用。众多文章致力于研究基于壳聚糖的生物材料的制备和性能,这些材料已被制成珠子、薄膜、纤维(二维支架)、凝胶、海绵(三维支架)以及伤口愈合材料。壳聚糖交联聚合物通过捕获废水中的阳离子、阴离子、有机染料和药物成分,展现出非凡的吸附能力。本文对这些吸附剂制备过程中灵活性的最显著表现进行了批判性综述,并比较了它们的吸附效率。值得注意的是,这些材料还被用作药物递送载体。此外,各种负载金属的壳聚糖基纳米复合材料已有效地应用于有机催化反应。根据丰富的文献调查,由于其丰富性、生态友好性以及在商业化方面的有效性,这类基于壳聚糖的材料值得进一步研究。壳聚糖的生物技术方面可能会带来具有工业和农业意义的、前景广阔的低成本材料和副产品。通过用适当的交联剂或添加剂微调壳聚糖的结构特性,可以满足对去除污染物的潜在吸附剂的持续需求。

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