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The biocompatibility of diamond-like carbon nano films

机译:金刚石碳纳米膜的生物相容性

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the sp{sup}3 (diamond like bonding) fraction and surface properties are the important determining factors among all structural and compositional characteristics which control the biocompatibility of diamond-like carbon (DLC) coating. Previous reports in this area have not adequately correlated these factors with coating optimization for specific biomedical applications. The present work is aimed at studying the effect of the structural and compositional properties on the biocompatibity of both hydrogenated and unhydrogenated tetrahedral DLC films produced by commercial deposition methods. Electron energy loss spectroscopy (EELS) and X-Ray photoelectron spectroscopy (XPS) were used for structural and compositional characterization. The human bone derived cells (HBDC) 3 day cell-culture showed good attachment to the DLC surfaces but no significant difference in morphology on different types of DLC. Blood protein adsorption study showed an increased albumin to fibrinogen ratio as the sp{sup}3 fraction increases.
机译:SP {SUP} 3(金刚石等粘合剂)分数和表面特性是控制类金刚石碳(DLC)涂层的生物相容性的所有结构和组成特征中的重要决定因素。本领域的先前报告并未充分相关,这些因素具有针对特定生物医学应用的涂层优化。目前的作品旨在研究结构和组成特性对通过商业沉积方法产生的氢化和未氢化的四面体DLC膜的生物相容性的影响。电子能量损失光谱(EEL)和X射线光电子能谱(XPS)用于结构和组成特征。人骨衍生的细胞(HBDC)3天细胞培养物显示于DLC表面的良好附着,但不同类型的DLC形态没有显着差异。血液蛋白质吸附研究表明,随着SP {SUP} 3分数增加,白蛋白与纤维蛋白原比增加。

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