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Graphene oxide as a scaffold for bone regeneration

机译:石墨烯氧化物作为骨再生的支架

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Graphene oxide (GO), the oxidized form of graphene, holds great potential as a component of biomedical devices, deriving utility from its ability to support a broad range of chemical functionalities and its exceptional mechanical, electronic, and thermal properties. GO composites can be tuned chemically to be biomimetic, and mechanically to be stiff yet strong. These unique properties make GO-based materials promising candidates as a scaffold for bone regeneration. However, questions still exist as to the compatibility and long-term toxicity of nanocarbon materials. Unlike other nanocarbons, GO is meta-stable, water dispersible, and autodegrades in water on the timescale of months to humic acid-like materials, the degradation products of all organic matter. Thus, GO offers better prospects for biological compatibility over other nanocarbons. Recently, many publications have demonstrated enhanced osteogenic performance of GO-containing composites. Ongoing work toward surface modification or coating strategies could be useful to minimize the inflammatory response and improve compatibility of GO as a component of medical devices. Furthermore, biomimetic modifications could offer mechanical and chemical environments that encourage osteogenesis. So long as care is given to assure their safety, GO-based materials may be poised to become the next generation scaffold for bone regeneration. (C) 2016 Wiley Periodicals, Inc.
机译:石墨烯氧化物(去)的氧化形式石墨烯,具有巨大的潜力的一个组成部分生物医学设备,从其产生效用支持广泛的化学物质的能力功能和它的特殊机械、电子和热性能。可以调整化学仿生,机械僵硬的还强。属性使GO-based材料有前途候选人作为骨再生的支架。然而,问题仍然存在兼容性和长期毒性nanocarbon材料。去是meta-stable,水分散型,autodegrades在水中的时间尺度上几个月胡敏酸材料,降解速率产品所有的有机物。生物相容性更好的前景在其他nanocarbons。出版物显示增强GO-containing成骨的性能复合材料。可以修改或涂层策略有助于减少炎症反应和提高兼容性的组件医疗设备。修改可以提供机械和化学环境,促进骨生成。护理是保证他们的安全,GO-based材料可能将成为下一个代对骨再生支架。2016年威利期刊、公司。

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