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Preparation and characterization of natural polymer-based composite films for hard tissue engineering approaches

机译:用于硬组织工程方法的天然聚合物基复合膜的制备和表征

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Hard tissue engineering has emerged to compensate for the losses in the properties of damaged bones by using scaffolds and cells. In this study, natural polymers chitosan and gelatin were used as scaffold materials because of their great resemblance to extracellular matrix elements. To enhance the mechanical properties and osteoconductivity of structures hydroxyapatite was added. This study is about the characterization of physico-chemical properties and cell behavior on scaffolds to optimize chitosan-gelatin ratio and aims to assess the effects of hydroxyapatite addition into polymeric matrix. According to thermal test results, decomposition temperatures decreased with non-sintered hydroxyapatite (nsHA) addition. Mechanical test results of composite structures were similar to that of cortical bone. Chitosan-gelatin films prepared with same amount of polymers showed the highest swelling degree. While nsHA added pure chitoan films showed higher cell number with respect to chitosan films; on the contrry, chitosan-gelatin polymeric blends indicated an opposite trend after nsHA addition.
机译:已经出现了硬组织工程,以通过使用支架和细胞来补偿受损骨骼的特性损失。在这项研究中,使用天然聚合物壳聚糖和明胶作为支架材料,因为它们与细胞外基质元素非常相似。为了增强结构的机械性能和骨传导性,添加了羟基磷灰石。这项研究是关于在支架上理化性质和细胞行为的表征,以优化壳聚糖-明胶比例,并旨在评估将羟基磷灰石添加到聚合物基质中的作用。根据热测试结果,添加非烧结的羟基磷灰石(nsHA)会降低分解温度。复合结构的力学测试结果与皮质骨相似。用相同量的聚合物制备的壳聚糖-明胶薄膜显示出最高的溶胀度。 nsHA添加的纯壳聚糖膜相对于壳聚糖膜显示更高的细胞数;相反,壳聚糖-明胶聚合物共混物在添加nsHA后显示出相反的趋势。

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