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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Incorporation of chitosan/graphene oxide nanocomposite in to the PMMA bone cement: Physical, mechanical and biological evaluation
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Incorporation of chitosan/graphene oxide nanocomposite in to the PMMA bone cement: Physical, mechanical and biological evaluation

机译:将壳聚糖/石墨烯氧化物纳米复合材料掺入PMMA骨水泥:物理,机械和生物学评价

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摘要

One of the most popular types of bone cements is polymethylmethacrylate (PMMA). The properties of this bone cement have attracted many researchers effort to modify its properties. In this study, after preparation of chitosan (Cs) powder and Cs/graphene oxide (GO) nanocomposite powder, they were added homogeneously to the PMMA bone cement with different percentages. The results showed that the addition of 25 wt% of Cs/GO nanocomposite powder to the PMMA bone cement cause to increase the compressive strength by 16.2%, the compressive modulus by 69.1% and the bending strength by 24.0%. The obtained results showed that by adding Cs/GO nanocomposite powder to the PMMA bone cement, setting time and injectability were increased, maximum temperature was decreased and apatite-like deposition was increased after 4 weeks of incubation in SBF solution. The results of MG-63 cell culture confirmed the improvement of cell viability, growth and cell adhesion for 25 wt% PMMA-Cs/GO composite bone cement. Therefore, it can be concluded that 25 wt% PMMA-Cs/GO composite bone cement with improved mechanical, physical and biological properties can be a good replacement for common commercial bone cements in orthopedic applications. (C) 2020 Elsevier B.V. All rights reserved.
机译:最受欢迎的骨水泥类型之一是聚甲基丙烯酸甲酯(PMMA)。这种骨水泥的性质吸引了许多研究人员努力改变其性质。在该研究中,在制备壳聚糖(Cs)粉末和Cs /甲烯烯氧化物(GO)纳米复合粉后,它们以不同百分比均匀地向PMMA骨水泥均匀加入。结果表明,将25wt%的Cs / Go纳米复合粉加入PMMA骨水泥原因,使抗压强度增加16.2%,压缩模量达69.1%,弯曲强度达24.0%。所得结果表明,通过将Cs / Go纳米复合粉末添加到PMMA骨水泥中,增加设定时间和可注射性,在SBF溶液中孵育4周后,最大温度降低,磷灰石状沉积增加。 Mg-63细胞培养物的结果证实了25wt%PMMA-CS / GO复合骨水泥的细胞活力,生长和细胞粘附的改善。因此,可以得出结论,25wt%的PMMA-CS /去复合骨水泥具有改善的机械,物理和生物特性,可以是整形外科应用中常见的商业骨水泥的良好替代品。 (c)2020 Elsevier B.v.保留所有权利。

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