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甲壳类动物废弃物衍生的壳聚糖:抗氧化特性及未来展望

Crustacean Waste-Derived Chitosan: Antioxidant Properties and Future Perspective.

作者信息

Muthu Manikandan, Gopal Judy, Chun Sechul, Devadoss Anna Jacintha Prameela, Hasan Nazim, Sivanesan Iyyakkannu

机构信息

Laboratory of Neo Natural Farming, Chunnampet, Tamil Nadu 603 401, India.

Department of Environmental Health Sciences, Konkuk University, Seoul 05029, Korea.

出版信息

Antioxidants (Basel). 2021 Feb 3;10(2):228. doi: 10.3390/antiox10020228.

Abstract

Chitosan is obtained from chitin that in turn is recovered from marine crustacean wastes. The recovery methods and their varying types and the advantages of the recovery methods are briefly discussed. The bioactive properties of chitosan, which emphasize the unequivocal deliverables contained by this biopolymer, have been concisely presented. The variations of chitosan and its derivatives and their unique properties are discussed. The antioxidant properties of chitosan have been presented and the need for more work targeted towards harnessing the antioxidant property of chitosan has been emphasized. Some portions of the crustacean waste are being converted to chitosan; the possibility that all of the waste can be used for harnessing this versatile multifaceted product chitosan is projected in this review. The future of chitosan recovery from marine crustacean wastes and the need to improve in this area of research, through the inclusion of nanotechnological inputs have been listed under future perspective.

摘要

壳聚糖是从几丁质中获得的,而几丁质又是从海洋甲壳类动物废弃物中回收得到的。本文简要讨论了回收方法及其不同类型以及回收方法的优点。壳聚糖的生物活性特性也已简要介绍,这些特性突出了这种生物聚合物所具有的明确可利用价值。文中还讨论了壳聚糖及其衍生物的变体及其独特性质。此外,介绍了壳聚糖的抗氧化特性,并强调了针对利用壳聚糖抗氧化特性开展更多研究工作的必要性。目前部分甲壳类动物废弃物正在被转化为壳聚糖;本综述预计了所有废弃物都可用于生产这种用途广泛、具有多方面特性的产品——壳聚糖的可能性。从海洋甲壳类动物废弃物中回收壳聚糖的未来发展以及通过纳入纳米技术投入来改进该研究领域的必要性已在未来展望部分列出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4e8/7913366/4bf44d1e8d41/antioxidants-10-00228-g001.jpg

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