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通过小角中子散射/小角 X 射线散射和流变学研究由 Plantago ovata 种子黏液高支化阿拉伯木聚糖形成的水凝胶的多尺度组装。

Multi-scale assembly of hydrogels formed by highly branched arabinoxylans from Plantago ovata seed mucilage studied by USANS/SANS and rheology.

机构信息

Australian Research Council Centre of Excellence in Plant Cell Walls, School of Chemical Engineering, The University of Queensland, Brisbane, QLD, 4076, Australia.

Australian Research Council Centre of Excellence in Plant Cell Walls, School of Chemical Engineering, The University of Queensland, Brisbane, QLD, 4076, Australia.

出版信息

Carbohydr Polym. 2019 Mar 1;207:333-342. doi: 10.1016/j.carbpol.2018.11.098. Epub 2018 Dec 2.

Abstract

The structures of two hydrogels formed by purified brush-like polysaccharides from Plantago ovata seed mucilage have been characterised from the nanometre to micrometre scale by using a combination of SANS and USANS techniques. These two hydrogels have distinctly different melting and rheological properties, but the structure of their gel networks bears striking similarity as revealed by USANS/SANS experiments. Surprisingly, we find that the dramatic changes in the rheological properties induced by temperature or change in the solvent quality are accompanied by a small alteration of the network structure as inferred from scattering curves recorded above melting or in a chaotropic solvent (0.7 M KOD). These results suggest that, in contrast to most gel-forming polysaccharides for which gelation depends on a structural transition, the rheological properties of Plantago ovata mucilage gels are dependent on variations in intermolecular hydrogen bonding. By enzymatically cleaving off terminal arabinose residues from the side chains, we have demonstrated that composition of side-chains has a strong effect on intermolecular interactions, which, in turn, has a profound effect on rheological and structural properties of these unique polysaccharides.

摘要

采用小角与超小角散射(SANS 和 USANS)技术相结合的方法,从纳米到微米尺度对纯化的车前草种子粘胶中的两种刷状多糖形成的水凝胶结构进行了研究。这两种水凝胶具有明显不同的熔融和流变性质,但它们的凝胶网络结构具有惊人的相似性,这一点从 USANS/SANS 实验中可以看出。令人惊讶的是,我们发现,温度或溶剂质量变化引起的流变性质的剧烈变化伴随着网络结构的微小变化,这是从记录在熔融或离液剂(0.7 M KOD)之上的散射曲线推断出来的。这些结果表明,与大多数依赖于结构转变的形成凝胶的多糖不同,车前草粘胶凝胶的流变性质取决于分子间氢键的变化。通过从侧链上酶切掉末端阿拉伯糖残基,我们已经证明侧链的组成对分子间相互作用有很强的影响,而这反过来又对这些独特多糖的流变和结构性质有深远的影响。

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