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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Features of formation and structure of silicon-polysaccharide-containing polyolate hydrogels obtained by the method of biomimetic mineralization
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Features of formation and structure of silicon-polysaccharide-containing polyolate hydrogels obtained by the method of biomimetic mineralization

机译:通过仿生矿化方法获得的含硅多糖的聚酯水凝胶形成和结构的特征

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摘要

We have demonstrated that our patented water-soluble biocompatible polyolate precursors of silicon tetraglycerolate and silicon tetrapolyethylene glycolate can be successfully utilized in biomimetical mineralization of polysaccharides of different nature. By the example of chitosan (cationic), xanthan gum (anionic), and hydroxyethyl cellulose (uncharged) polysaccharides, an accelerating effect on the gelation process has been demonstrated, and a stabilizing effect has been revealed on the hydrogels formed as transparent monoliths showing resistance to syneresis. Structural features of silicon-polysaccharide-containing hydrogels were investigated using advanced physical methods of cryo-scanning electron microscopy and transmission electron microscopy. Thus formed silicon-containing 3D network of gels is found to be polymeric and appears to have an ordered amorphous morphostructure, which can be explained as caused by the effect of polysaccharides serving as templates. The difference in the reactivity of precursors leads to the peculiarities of the gelation process in the presence of the polysaccharides under study, as well as to the difference in the composition of the formed products. The sol-gel process utilized to obtain the silicon-polysaccharide-containing hydrogels proceeds under the mild conditions with no catalyst or any organic solvent, and thus can be regarded as belonging to the green chemistry methods that show promise for biomedical material applications.
机译:我们已经证明,我们的专利水溶性生物相容性聚酯前体的四甘油硅酸盐和硅四聚乙烯乙酸乙酯可用于不同性质多糖的染色矿化。通过壳聚糖(阳离子),黄原胶(阴离子)和羟乙基纤维素(不带电)多糖的实施例,已经证明了对凝胶化过程的加速效果,并且在形成抗性的透明整料的水凝胶上揭示了稳​​定效果促成。研究了含硅 - 多糖的水凝胶的结构特征,采用高温扫描电子显微镜和透射电子显微镜的先进物理方法研究。由此发现含硅的3D网络的凝胶是聚合物的,并且似乎具有有序的无定形样力学结构,其可以通过用作模板的多糖的作用引起的。前体反应性的差异导致凝胶化过程在研究中的多糖存在下的特性,以及成型产物的组成的差异。用于获得含硅 - 多糖水凝胶的溶胶 - 凝胶工艺在不含催化剂或任何有机溶剂的温和条件下进行,因此可以被视为属于为生物医学应用的承诺的绿色化学方法。

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