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Thiolated chitosan/glycosaminoglycans multilayered films : QCM-D study on the films formation and their biological properties

机译:硫醇化壳聚糖/糖胺聚糖多层膜:QCM-D研究膜的形成及其生物学性质

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摘要

Layer-by-layer technique is widely used to produce polyelectrolyte multilayered films for material surface functionalization. The technique simplicity coupled with the biological potential of biopolymers, e.g. polysaccharides, make such assemblies a suitable choice for many biomedical applications. In this study the formation of the films comprising of thiolated chitosan and glycosaminoglycans (GAGs) by alternate deposition was assessed in situ using QCM-D. Thiolated chitosan was used under the hypothesis of disulfide formation between its molecules to increase stability and/or stiffness of the films. The effects of the chitosan modification degree and GAGs molecular weight on the film thickness were investigated. All experimental groups showed exponential film growth, while the thickness increased with the chitosan thiolation degree and molecular weight of GAGs. Cellular behavior on the assemblies was found to be tunable by the appropriate selection of the terminate layer. Antimicrobial activity and protein adsorption on the new constructs are also commented.
机译:逐层技术被广泛用于生产用于材料表面功能化的聚电解质多层膜。技术的简单性加上生物聚合物的生物潜力,例如多糖,使此类装配成为许多生物医学应用的合适选择。在这项研究中,使用QCM-D原位评估了通过交替沉积形成的包含硫醇化壳聚糖和糖胺聚糖(GAG)的薄膜。在其分子之间二硫键形成的假设下使用了硫代壳聚糖以增加薄膜的稳定性和/或刚度。研究了壳聚糖修饰度和GAGs分子量对膜厚的影响。所有实验组均显示出指数膜生长,而厚度随壳聚糖硫醇化程度和GAG分子量的增加而增加。通过适当选择终止层,可以发现组件上的蜂窝行为是可调整的。还评论了在新构建体上的抗菌活性和蛋白质吸附。

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