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Electroactive 3D Printed Scaffolds Based on Percolated Composites of Polycaprolactone with Thermally Reduced Graphene Oxide for Antibacterial and Tissue Engineering Applications

机译:基于聚己内酯与热还原氧化石墨烯的渗透复合材料的电活性3D打印支架用于抗菌和组织工程应用

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摘要

Applying electrical stimulation (ES) could affect different cellular mechanisms, thereby producing a bactericidal effect and an increase in human cell viability. Despite its relevance, this bioelectric effect has been barely reported in percolated conductive biopolymers. In this context, electroactive polycaprolactone (PCL) scaffolds with conductive Thermally Reduced Graphene Oxide (TrGO) nanoparticles were obtained by a 3D printing method. Under direct current (DC) along the percolated scaffolds, a strong antibacterial effect was observed, which completely eradicated on the surface of scaffolds. Notably, the same ES regime also produced a four-fold increase in the viability of human mesenchymal stem cells attached to the 3D conductive PCL/TrGO scaffold compared with the pure PCL scaffold. These results have widened the design of novel electroactive composite polymers that could both eliminate the bacteria adhered to the scaffold and increase human cell viability, which have great potential in tissue engineering applications.
机译:施加电刺激(ES)可能会影响不同的细胞机制,从而产生杀菌作用并增加人类细胞的生存能力。尽管具有相关性,但在渗透的导电生物聚合物中几乎没有报道过这种生物电效应。在这种情况下,通过3D打印方法获得了具有导电性热还原氧化石墨烯(TrGO)纳米颗粒的电活性聚己内酯(PCL)支架。在沿着渗透的支架的直流电(DC)下,观察到了强大的抗菌作用,该作用在支架的表面上被完全根除。值得注意的是,与纯PCL支架相比,相同的ES方案还使附着在3D导电PCL / TrGO支架上的人间充质干细胞的活力提高了四倍。这些结果拓宽了新型电活性复合聚合物的设计范围,该聚合物既可以消除附着在支架上的细菌,又可以提高人体细胞的生存能力,这在组织工程应用中具有巨大的潜力。

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