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Graphene oxide incorporated polycaprolactone/chitosan/collagen electrospun scaffold: Enhanced osteogenic properties for bone tissue engineering

机译:石墨烯氧化物掺入多碳氢甲烷/壳聚糖/胶原型电纺架脚手架:增强骨组织工程的成骨特性

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摘要

Abstract This in vitro study aimed to evaluate the physicochemical and biological activity of the polycaprolactone/chitosan/collagen scaffolds incorporated with 0, 0.5, 3, and 6 wt% of graphene oxide (GO). Using standard tests and MG‐63 cells, the characteristics of scaffolds were evaluated, and the behavior of osteoblasts were simulated, respectively. A non‐significant decrease in nanofibers diameter was noted in scaffolds with a higher ratio of GO. The hydrophilicity and bioactivity of the scaffold surface, as well as cell attachment and proliferation, increased in correspondence to an increase in GO. The higher ratio of GO also improved the osteogenesis activity. GO increased the degradation rate, but it was negligible and seemed not enough to endanger stability. Modifying the scaffolds with GO did not make a significant change to the antibacterial effect.
机译:摘要这种体外研究旨在评估掺入0,0.5,3和6wt%的石墨烯(GO)的聚己内酯/壳聚糖/胶原支架的物理化学和生物活性。 使用标准试验和Mg-63细胞,评价支架的特性,分别模拟成骨细胞的行为。 在具有较高比例的支架中注意到纳米纤维直径的非显着降低。 支架表面的亲水性和生物活性,以及细胞附着和增殖,相应于GO的增加增加。 较高比率也改善了骨发生活性。 去提高退化率,但它可以忽略不计,似乎不足以危及稳定性。 通过Go改变支架并没有对抗菌效果进行显着变化。

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