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Long-term stable surface modification of DLC coatings

机译:DLC涂层的长期稳定表面改性

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The use of coatings based on diamond like carbon (DLC) for medical applications was established during the last years. Main advantages of these coatings are its high hardness, good wear and friction behavior and its biocompatibility. Using low-energy electron-beam treatment, we addressed the surface modification of DLC coatings. The aim was to generate new biofunctional surface characteristics that are long-term stable.Electron-beam modification resulted in significantly increased surface hydrophilicity, giving rise to the conclusion, that biological reaction on these surfaces will also be influenced by the modification. Furthermore, the stability of the surface modification was investigated. Therefore, the modified samples were stored for 8 weeks under ambient conditions. Additionally, the samples were stored in physiological saline solution at 37°C for 8 weeks. The stability of the modification was analyzed by contact angle measurement confirming no changes over the whole period of storage. In addition, the stability against standard cleaning and sterilization procedures was investigated. The durability of the modification to withstand these cleaning procedures was also proven.With these findings, the low-energy electron-beam modification seems to be a suitable tool for surface modification of DLC coatings. Thereby, the very good long-term stability is a great improvement in comparison to conventional surface modification methods like plasma treatment. In order to investigate the suitability of the modified coatings for biomedical applications, the cellular response was investigated using human fibroblasts, revealing a significantly reduced cell count on modified surfaces while maintaining their biocompatibility. By modification of the DLC surfaces, it is possible to adapt the cell adhesion on the treated surface areas. These findings demonstrate electron-beam treatment to be applicable for partial surface modification and functionalization within biomedical applications.
机译:在过去几年中,已经建立了基于类金刚石碳(DLC)的涂料在医疗应用中的使用。这些涂层的主要优点是其高硬度,良好的耐磨性和摩擦性能以及其生物相容性。使用低能电子束处理,我们解决了DLC涂层的表面改性问题。目的是产生长期稳定的新生物功能表面特征。电子束改性导致表面亲水性显着提高,从而得出结论,这些表面上的生物反应也将受到改性的影响。此外,研究了表面改性的稳定性。因此,将修饰的样品在环境条件下保存8周。另外,将样品在37℃的生理盐水溶液中保存8周。通过接触角测量分析了修饰物的稳定性,证实了在整个存储期间没有变化。此外,还研究了针对标准清洁和灭菌程序的稳定性。事实证明,这种改性剂可以承受这些清洁程序的耐久性。有了这些发现,低能电子束改性剂似乎是DLC涂层表面改性的合适工具。因此,与诸如等离子体处理的常规表面改性方法相比,非常好的长期稳定性是很大的改进。为了研究改性涂层对生物医学应用的适用性,使用人类成纤维细胞研究了细胞反应,结果表明,在保持其生物相容性的同时,改性表面上的细胞数显着减少。通过修饰DLC表面,可以使细胞粘附在处理过的表面区域上。这些发现表明,电子束处理适用于生物医学应用中的部分表面改性和功能化。

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