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首页> 外文期刊>Journal of Molecular Liquids >Chitosan blends containing hyaluronic acid and collagen. Compatibility behaviour
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Chitosan blends containing hyaluronic acid and collagen. Compatibility behaviour

机译:含有透明质酸和胶原蛋白的壳聚糖混合物。相容性行为

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Degree of miscibility of chitosan (Ch) blends containing hyaluronic add (HA) and collagen (Coll) was analysed by viscometric method, atomic force microscopy (AFM) and monitored by contact angle measurements. The viscosity interaction parameter of each polymer in 0.1 mol.dm(-3) CH3COOH/0.2 mol.dm(-3) NaCl solution for Ch and 0.5 mol.dm(-3) NaCl or 0.1 mol.dm(-3) HCl solution for HA and 0.1 mol.dm(-3) CH3COOH solution for Coll as well as the two-component blend systems and the ternary blend systems have been determined. These studies indicated that chitosan/hyaluronic acid blends were miscible at the weight fraction of chitosan w(ch) >= 0.5 in 0.1 mol.dm(-3) CH3COOH/0.2 mol.dm(-3) NaCl and 0.1 mol.dm-3 HCl at 25 degrees C. In the case of ternary blends, the polymeric components showed miscibility with collagen at w(Coll) < 0.2. Moreover, it was found that the wettability of Ch/HA and Ch/HA/Coll blend films increased in comparison to the chitosan and collagen films. The study of blends by AFM showed a completely different morphology when compared with that of pure components as microdomains appeared as globular agglomerates containing more or less spherical particles instead of the independent microdomains observed in the native components, possibly as a consequence of interactions between polymers. (C) 2015 Elsevier B.V. All rights reserved.
机译:含有透明质酸添加物(HA)和胶原蛋白(Coll)的壳聚糖(Ch)共混物的混溶度通过粘度法,原子力显微镜(AFM)进行分析,并通过接触角测量进行监控。每种聚合物在0.1 mol.dm(-3)CH3COOH / 0.2 mol.dm(-3)NaCl溶液中的Ch和0.5 mol.dm(-3)NaCl或0.1 mol.dm(-3)HCl中的粘度相互作用参数确定了HA溶液和Coll的0.1 mol.dm(-3)CH3COOH溶液以及两组分共混体系和三元共混体系。这些研究表明,壳聚糖/透明质酸混合物在0.1 mol.dm(-3)CH3COOH / 0.2 mol.dm(-3)NaCl和0.1 mol.dm-在25摄氏度下为3 HCl。在三元共混物的情况下,聚合物组分在w(Coll)<0.2时显示出与胶原蛋白的混溶性。此外,发现与壳聚糖和胶原膜相比,Ch / HA和Ch / HA / Coll共混物膜的润湿性增加。通过AFM进行的共混物研究表明,与纯组分相比,形态发生了完全不同的变化,因为微区的出现是球状附聚物包含或多或少的球形颗粒,而不是天然组分中观察到的独立微区,这可能是聚合物之间相互作用的结果。 (C)2015 Elsevier B.V.保留所有权利。

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