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Multifunctional biodegradable polymer nanocomposite incorporating graphene-silver hybrid for biomedical applications

机译:结合石墨烯-银杂化物的多功能可生物降解聚合物纳米复合材料,用于生物医学应用

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Toward preparing a biodegradable multifunctional material, hybrid graphene-silver particles were used to reinforce poly(epsilon-caprolactone) (PCL). Composites of reduced graphene oxide (RGO) sheets decorated with silver (RGO_Ag) were compared with PCL/RGO and PCL/Ag composites containing RGO and silver nanoparticles (AgNPs), respectively. RGO_Ag particles were well dispersed in PCL unlike RGO and AgNPs due to enhanced exfoliation. Uniformly dispersed RGO_Ag led to 77% increase in the modulus of PCL and electrical conductivity increased four orders of magnitude to 10(-7) S/cm at 5 wt% filler greatly exceeding the improvements with RGO or AgNP alone in PCL. RGO_Ag particles reinforced in PCL showed sustained release of silver ions from the PCL matrix unlike the burst release from PCL/Ag. PCL/RGO_Ag and PCL/RGO were non-toxic to human mesenchymal stem cells unlike the highly toxic PCL/Ag composites. PCL/RGO_Ag also supported stem cell differentiation. The PCL/RGO_Ag composites exhibited good antibacterial effect due to a combination of silver ion release from the AgNPs and the mechanical rupture induced by the RGO in the hybrid nanoparticles. Thus, the synergistic effect of Ag and RGO in the hybrid particles in the PCL matrix uniquely resulted in a multifunctional material for potential use in fracture fixation devices and tissue engineering. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了制备可生物降解的多功能材料,杂化石墨烯-银颗粒用于增强聚(ε-己内酯)(PCL)。将装饰有银的还原型氧化石墨烯(RGO)薄片的复合材料(RGO_Ag)与分别包含RGO和银纳米颗粒(AgNPs)的PCL / RGO和PCL / Ag复合材料进行了比较。与RGO和AgNPs不同,RGO_Ag颗粒由于剥落增强而很好地分散在PCL中。均匀分散的RGO_Ag导致PCL模量增加77%,并且在5 wt%的填料下,电导率增加了四个数量级,达到10(-7)S / cm,大大超过了PCL中单独使用RGO或AgNP的改进。与PCL / Ag的爆炸释放不同,在PCL中增强的RGO_Ag颗粒显示银离子从PCL基质中持续释放。与高毒性PCL / Ag复合材料不同,PCL / RGO_Ag和PCL / RGO对人间充质干细胞无毒。 PCL / RGO_Ag还支持干细胞分化。 PCL / RGO_Ag复合材料表现出良好的抗菌效果,这是由于从AgNPs释放银离子和杂化纳米颗粒中RGO引起的机械断裂的结合。因此,Ag和RGO在PCL基质中的杂化颗粒中的协同作用独特地产生了一种多功能材料,可用于骨折固定装置和组织工程中。 (C)2016 Elsevier Ltd.保留所有权利。

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