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Integrated biomimetic carbon nanotube composites for in vivo systems

机译:综合仿生碳纳米管复合材料对于体内系统

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摘要

As interest in using carbon nanotubes for developing biologically compatible systems continues to grow, biological inspiration is stimulating new directions for in vivo approaches. The ability to integrate nanotechnology-based systems in the body will provide greater successes if the implanted material is made to mimic elements of the biological milieu especially through tuning physical and chemical characteristics. Here, we demonstrate the highly successful capacity for in vivo implantation of a new carbon nanotube-based composite that is, itself, integrated with a hydroxyapatite-polymethyl methacrylate to create a nanocomposite. The success of this approach is grounded in finely tailoring the physical and chemical properties of this composite for the critical demands of biological integration. This is accomplished through controlling the surface modification scheme, which affects the interactions between carbon nanotubes and the hydroxyapatite-polymethyl methacrylate. Furthermore, we carefully examine cellular response with respect to adhesion and proliferation to examine in vitro compatibility capacity. Our results indicate that this new composite accelerates cell maturation through providing a mechanically competent bone matrix; this likely facilitates osteointegration in vivo. We believe that these results will have applications in a diversity of areas including carbon nanotube, regeneration, chemistry, and engineering research.
机译:利用碳纳米管作为感兴趣开发生物兼容的系统继续增长,生物启发刺激体内的新方向方法。基于纳米技术的系统在体内如果植入提供更大的成功材料是由模仿的元素生物环境尤其是通过调优物理和化学特性。展示了高度成功的能力体内植入新的基于碳纳米管的复合,本身,与一个集成hydroxyapatite-polymethyl丙烯酸甲酯来创建纳米复合材料。基于物理和精细裁剪这个组合的化学性质生物集成的关键要求。通过控制表面吗修改方案,影响碳纳米管和之间的相互作用hydroxyapatite-polymethyl丙烯酸甲酯。此外,我们仔细检查细胞附着力和响应体外增殖检查兼容性能力。复合加速细胞成熟提供一个机械主管骨基质;这可能促进osteointegration体内。我们相信,这些结果应用等领域的多样性碳纳米管、再生、化学工程研究。

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