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Magnetic Control of Macromolecular Conformations in Supramolecular Anionic Polysaccharide-Iron Complexes

机译:超分子阴离子多糖-铁配合物中大分子构象的磁控制

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摘要

The anionic iota carrageenan polysaccharide is enriched with Fe-II and Fe-III by ion exchange against FeSO4 and FeCl3. With divalent iron, portions of polymer chains undergo a secondary structure transition from random coils to single helices. The single-chain macromolecular conformations can be manipulated by an external magnetic field: upon exposure to 1.1T, the helical portions exhibit 1.5-fold stiffening and 1.1-fold stretching, whereas the coil conformations respond much less as a result of lower contents of condensed iron ions. Along with the coil-helix transition, the trivalent iron triggers the formation of superstructures. The applicability of iron-enriched iota carrageenan as functional ingredient for food fortification is tested by free Fe2+ and Fe3+ contents, respectively, with the most promising iota-Fe-III yielding 53% of bound iron, which is due to the superstructures, where the ferric ions are chelated by the supramolecularly self-assembled polymer host.
机译:通过与FeSO4和FeCl3进行离子交换,阴离子型I型角叉菜胶多糖富含Fe-II和Fe-III。对于二价铁,部分聚合物链经历了从无规卷曲到单螺旋的二级结构转变。单链大分子构象可通过外部磁场进行操纵:暴露于1.1T时,螺旋部分显示1.5倍的刚性和1.1倍的拉伸,而线圈构象的响应则低得多,这是由于低含量的缩合物导致的。铁离子。随着线圈-螺旋转变,三价铁触发了上层建筑的形成。富含铁的iota角叉菜胶作为食品强化功能成分的适用性分别通过游离Fe2 +和Fe3 +含量进行测试,最有希望的iota-Fe-III产生53%的结合铁,这是由于其上层结构所致。铁离子被超分子自组装聚合物主体螯合。

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