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Polysaccharide structures and interactions in a lithium chloride/urea/water solvent

机译:氯化锂/尿素/水溶剂中的多糖结构及其相互作用

摘要

The molten salt hydrate, lithium chloride (LiCl)/urea/water has previously been shown to swell cellulose, but there has so far been no work done to explore its effect on other polysaccharides. In this paper we have investigated the solvent effects of LiCl/urea/water on four natural polysaccharides. Fenugreek gum and xyloglucan, which are both highly branched, were found to increase in viscosity in LiCl/urea/water relative to water, possibly due to the breakage of all intra-molecular associations whereas the viscosity of konjac glucomannan which is predominantly unbranched did not change. Locust bean gum (LBG) had a lower viscosity in LiCl/urea/water compared to water due to the disruption of aggregates. Confocal microscopy showed that fenugreek gum and LBG are able to bind to cellulose in water, however, the conformational change of fenugreek gum in these solvent conditions inhibited it from binding to cellulose in LiCl/urea/water whereas conformational change allowed xyloglucan to bind to cellulose in LiCl/urea/water whilst it was unable to bind in water. Konjac glucomannan did not bind to cellulose in either solvent system. These results provide new insights into the impact of polysaccharide fine structure on conformational change in different solvent environments.
机译:熔融盐水合物氯化锂(LiCl)/尿素/水以前已被证明能使纤维素溶胀,但迄今为止,尚未进行任何研究来探讨其对其他多糖的作用。在本文中,我们研究了LiCl /脲/水对四种天然多糖的溶剂作用。都高度支化的胡芦巴胶和木葡聚糖被发现相对于水在LiCl /尿素/水中的粘度增加,这可能是由于所有分子内缔合的破坏,而主要是无支链的魔芋葡甘露聚糖的粘度却没有更改。刺槐豆胶(LBG)在LiCl /脲/水中的粘度比水低,这是由于聚集体的破坏。共聚焦显微镜显示胡芦巴胶和LBG能够与水中的纤维素结合,但是,在这些溶剂条件下胡芦巴胶的构象变化抑制了其在LiCl /尿素/水中的结合,而构象变化使木葡聚糖与纤维素结合在LiCl /脲/水中时,它无法结合在水中。魔芋葡甘露聚糖在任一溶剂系统中均不结合纤维素。这些结果为了解多糖精细结构对不同溶剂环境中构象变化的影响提供了新的见解。

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