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A Biomimetic Chitosan Composite with Improved Mechanical Properties in Wet Conditions

机译:在潮湿条件下具有改善的机械性能的仿生壳聚糖复合材料

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摘要

Chitosan is one of the most widely used structural polymers for biomedical applications because it has many favorable properties. However, one of the most critical drawbacks regarding the use of chitosan as a biomedical material is its poor mechanical properties in wet conditions. Here, we designed a method to improve the mechanical properties of chitosan in wet conditions and minimized the swelling behavior of chitosan film due to water adsorption by mimicking the sclerotization of insect cuticles and squid beaks, that is, cate-chol-meditated crosslinking. The biomimetic chitosan composite film was prepared by mixing chitosan with l-3,4-dihydroxyphenylalanine (DOPA) as a catecholic crosslinker and sodium periodate as an oxidant. The catechol-meditated crosslinking provided a sevenfold enhancement in the stiffness in wet conditions compared to pure chitosan films and reduced the swelling behavior of the chitosan film. This strategy expands the possible applications for the use of chitosan composites as load-bearing biomaterials.
机译:壳聚糖是生物医学应用中使用最广泛的结构聚合物之一,因为它具有许多有利的特性。然而,关于使用壳聚糖作为生物医学材料的最关键的缺点之一是其在潮湿条件下的机械性能差。在这里,我们设计了一种方法来改善壳聚糖在潮湿条件下的机械性能,并通过模仿昆虫角质层和鱿鱼喙的硬化过程(即邻苯二酚-胆固醇交联)来最小化壳聚糖膜因水吸附而产生的溶胀行为。通过将壳聚糖与l-3,4-二羟基苯丙氨酸(DOPA)作为泛醇交联剂和高碘酸钠作为氧化剂混合来制备仿生壳聚糖复合膜。与纯壳聚糖膜相比,邻苯二酚介导的交联在潮湿条件下的刚度提高了七倍,并降低了壳聚糖膜的溶胀行为。该策略扩展了将壳聚糖复合材料用作承重生物材料的可能应用。

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