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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Modification of proteins and polysaccharides using dodecenyl succinic anhydride: Synthesis, properties and applications-A review
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Modification of proteins and polysaccharides using dodecenyl succinic anhydride: Synthesis, properties and applications-A review

机译:用十二烯基琥珀酸酐改性蛋白质和多糖:合成,性质和应用 - 综述

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Proteins and polysaccharides are among the biopolymers produced by living organisms for their structural integrity, protection, physiological functions, or as reserve energy. These biopolymers are extracted from their natural matrices by humans to fulfil basic as well as convenience needs. The inquisitive human nature, ever-growing demands and resources at disposal have led to copious research in the field of biopolymer modifications. The availability of reactive sites on these biopolymers make them suitable substrates for esterification, etherification, oxidation, epoxidation, N-acylation, alkylation, etc. Dodecenyl succinic anhydride (DDSA) is an esterifying agent that introduces a 12-carbon hydrophobic chain in the structure of the substrate containing suitable reactive sites. The use of DDSA as a modifying agent for biopolymers dates back to the mid-twentieth century. Even today, many biopolymers are explored for modification with DDSA for improved functionality. These modifications are aimed at catering the needs of the paint, pharmaceutical, cosmetic, food and textile industries. This review attempts to systematically compile reported research on the use of DDSA as a biopolymer modifying agent, the various reaction techniques, properties and applications thereof. (C) 2017 Elsevier B.V. All rights reserved.
机译:蛋白质和多糖是通过生物体产生的生物聚合物,其结构完整性,保护,生理功能或作为储备能量产生。这些生物聚合物由人类从其天然基质中提取,以满足基本的和方便的需求。优异的人性性质,不断增长的需求和资源在处理中导致了在生物聚合物修饰领域的大量研究。这些生物聚合物上的反应性位点的可用性使其适用于酯化,醚化,氧化,环氧化,N-酰化,烷基化等。十二烯基琥珀酸酐(DDSA)是在结构中引入12碳疏水链的酯化剂含有合适的反应性位点的基材。使用DDSA作为生物聚合物的改性剂可以追溯到二十世纪中期。即使在今天,许多生物聚合物都是用DDSA改进而改进的功能。这些修改旨在满足油漆,制药,化妆品,食品和纺织工业的需求。本综述尝试系统地编译了报告的关于使用DDSA作为生物聚合物改性剂的研究,各种反应技术,性质和应用。 (c)2017年Elsevier B.V.保留所有权利。

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