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A novel basalt fiber-reinforced polylactic acid composite for hard tissue repair

机译:新型玄武岩纤维增强聚乳酸复合材料用于硬组织修复

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摘要

A basalt fiber (BF) was, for the first time, introduced into a poly(L-lactic acid) (PLLA) matrix as innovative reinforcement to fabricate composite materials for hard tissue repair. Firstly, BF/PLLA composites and pure PLLA were produced by the methods of solution blending and freeze drying. The results showed that basalt fibers can be uniformly dispersed in the PLLA matrix and significantly improve the mechanical properties and hydrophilicity of the PLLA matrix. The presence of basalt fibers may retard the polymer degradation rate and neutralize the acid degradation from PLLA. Osteoblasts were cultured in vitro to evaluate the cytocompatibility of the composite. An MTT assay revealed that osteoblasts proliferated well for 7 days and there was little difference found in their viability on both PLLA and BF/PLLA films, which was consistent with the alkaline phosphatase (ALP) activity results. A fluorescent staining observation showed that osteoblasts grew well on the composites. SEM images displayed that osteoblasts tended to grow along the fiber axis. The formation of mineralized nodules was observed on the films by Alizarin red S staining. These results suggest that the presence of basalt fibers does not noticeably affect osteoblastic behavior and the designed composites are osteoblast compatible. It is concluded that basalt fibers, as reinforcing fibers, may have promising applications in hard tissue repair.
机译:首次将玄武岩纤维(BF)引入聚(L-乳酸)(PLLA)基质中,作为创新的增强材料,以制造用于硬组织修复的复合材料。首先,通过溶液共混和冷冻干燥的方法制备了BF / PLLA复合材料和纯PLLA。结果表明,玄武岩纤维可以均匀地分散在PLLA基体中,并显着改善PLLA基体的机械性能和亲水性。玄武岩纤维的存在可以延迟聚合物的降解速率并中和来自PLLA的酸降解。在体外培养成骨细胞以评估复合物的细胞相容性。 MTT分析显示成骨细胞增殖良好,可持续7天,并且在PLLA和BF / PLLA膜上的成活率几乎没有差异,这与碱性磷酸酶(ALP)活性结果一致。荧光染色观察表明,成骨细胞在复合材料上生长良好。 SEM图像显示成骨细胞倾向于沿纤维轴生长。通过茜素红S染色在膜上观察到矿化结节的形成。这些结果表明,玄武岩纤维的存在不会显着影响成骨细胞的行为,并且设计的复合材料与成骨细胞相容。结论是玄武岩纤维作为增强纤维,在硬组织修复中可能具有广阔的应用前景。

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