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Biological Compatibility of a Polylactic Acid Composite Reinforced with Natural Chitosan Obtained from Shrimp Waste

机译:从虾粪中获得的天然壳聚糖增强的聚乳酸复合材料的生物相容性

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摘要

The aim of this work is to evaluate the effect of chitosan content (1, 3 and 5 wt %) dispersed in polylactic acid (PLA) on the structure and properties of composites. Also, the hydrolytic degradation, and the cell viability and adhesion of human MG-63 osteoblasts are analyzed to determine the composites’ suitability for use in tissue engineering. For the manufacture of the materials, natural chitosan was extracted chemically from shrimp exoskeleton. The composites were fabricated by extrusion, because it is a low-cost process, it is reproducible, and it does not compromise the biocompatibility of the materials. FT-IR and XRD show that the chitosan does not change the polymer structure, and interactions between the composite components are discarded. In vitro degradation tests show that the composites do not induce significant pH changes in phosphate buffer solution due to their low susceptibility to hydrolytic degradation. The adhesion and morphological characteristics of the osteoblasts are evaluated using confocal microscopy and scanning electron microscopy. The cell viability is determined by the MTT assay. Osteoblasts adhesion is observed on the surface of PLA and composites. A higher amount of chitosan, higher number of cells with osteoblastic morphology, and mineralized nodules are observed on the composite surface. The highest metabolic activity is evidenced at 21 days. The results suggest that the Polylactic acid/chitosan composites are potentially suitable for use as a biomaterial.
机译:这项工作的目的是评估分散在聚乳酸(PLA)中的壳聚糖含量(1、3和5 wt%)对复合材料的结构和性能的影响。此外,还对人类MG-63成骨细胞的水解降解以及细胞活力和粘附力进行了分析,以确定该复合材料在组织工程中的适用性。为了制造该材料,从虾的外骨骼化学提取天然壳聚糖。复合材料是通过挤出制造的,因为它是一种低成本的工艺,具有可复制性,并且不会损害材料的生物相容性。 FT-IR和XRD表明壳聚糖不改变聚合物结构,并且复合组分之间的相互作用被丢弃。体外降解测试表明,由于复合材料对水解降解的敏感性较低,因此不会在磷酸盐缓冲溶液中引起明显的pH变化。使用共聚焦显微镜和扫描电子显微镜评估成骨细胞的粘附性和形态特征。细胞存活力通过MTT测定法确定。在PLA和复合材料表面观察到成骨细胞粘附。在复合材料表面观察到壳聚糖含量更高,成骨细胞形态细胞数量更多以及矿化的结节。在21天时,代谢活性最高。结果表明,聚乳酸/壳聚糖复合材料潜在地适合用作生物材料。

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