生物高聚物
化学
铁
多糖
化学计量学
热稳定性
齿合度
高分子化学
氯仿
高分子
水溶液中的金属离子
核化学
离子
结晶学
无机化学
金属
聚合物
有机化学
生物化学
作者
Xiaoxue Yao,Xiaolin Yao,Kai Xu,Kao Wu,Xiaoyu Chen,Ning Liu,Katsuyoshi Nishinari,Glyn O. Phillips,Fatang Jiang
标识
DOI:10.1016/j.ijbiomac.2019.12.123
摘要
Artemisia sphaerocephala Krasch. polysaccharide (ASKP) has attracted growing attention in the field of food and medical engineering due to its biological activity and colloidal property. In this study, the binding between ASKP and ferric ions was found and the binding mechanism was explored. The results showed that ASKP could form a hydrogel with three-dimensional network structure in the presence of ferric ions. Ferric ions could specifically bind with the carboxyl and hydroxyl groups of the high molecular weight fraction of 60P with the binding stoichiometry of [M3+]/[repeating unit] = 2.5. The possible mechanism of the formation of ASKP-Fe3+ complex was proposed as two binding modes of monodentate and bridging binding. ASKP-Fe3+ complex exhibited higher thermal stability than ASKP revealed with DSC thermograms. The study indicated that ASKP would be a novel gelation biopolymer and the ASKP-Fe3+ complex hydrogel could be exploited as a new iron fortifier.
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