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Nanostructured polymeric coatings based on chitosan and dopamine-modified hyaluronic acid for biomedical applications

机译:基于壳聚糖和多巴胺改性的透明质酸的纳米结构聚合物涂料,用于生物医学应用

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摘要

In a marine environment, specific proteins are secreted by mussels and used as a bioglue to stick to a surface. These mussel proteins present an unusual amino acid 3,4-dihydroxyphenylalanine (known as DOPA). The outstanding adhesive properties of these materials in the sea harsh conditions have been attributed to the presence of the catechol groups present in DOPA. Inspired by the structure and composition of these adhesive proteins, we used dopamine-modified hyaluronic acid (HA-DN) prepared by carbodiimide chemistry to form thin and surface-adherent dopamine films. This conjugate was characterized by distinct techniques, such as nuclear magnetic resonance and ultraviolet spectrophotometry. Multilayer films were developed based on chitosan and HA-DN to form polymeric coatings using the layer-by-layer methodology. The nanostructured films formation was monitored by quartz crystal microbalance. The film surface was characterized by atomic force microscopy and scanning electron microscopy. Water contact angle measurements were also conducted. The adhesion properties were analyzed showing that the nanostructured films with dopamine promote an improved adhesion. In vitro tests showed an enhanced cell adhesion, proliferation and viability for the biomimetic films with catechol groups, demonstrating their potential to be used in distinct biomedical applications.
机译:在海洋环境中,贻贝分泌特定的蛋白质,并用作粘在表面的生物胶。这些贻贝蛋白具有不寻常的氨基酸3,4-二羟基苯丙氨酸(称为DOPA)。这些材料在恶劣海况下的出色粘合性能归因于DOPA中存在的邻苯二酚基团。受这些粘附蛋白的结构和组成的启发,我们使用通过碳二亚胺化学法制备的多巴胺修饰的透明质酸(HA-DN)形成了薄且表面粘附的多巴胺膜。该缀合物的特征在于独特的技术,例如核磁共振和紫外分光光度法。基于壳聚糖和HA-DN的多层膜已开发出来,可以使用逐层方法形成聚合物涂层。通过石英晶体微量天平监测纳米结构膜的形成。膜表面通过原子力显微镜和扫描电子显微镜表征。还进行了水接触角的测量。分析了粘附性能,表明具有多巴胺的纳米结构膜促进了改善的粘附。体外试验显示,具有邻苯二酚基团的仿生膜具有增强的细胞粘附性,增殖能力和生存能力,证明了其在不同生物医学应用中的潜力。

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