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A Review of the Effect of a Nanostructured Thin Film Formed by Titanium Carbide and Titanium Oxides Clustered around Carbon in Graphitic Form on Osseointegration

机译:碳化钛和石墨化成簇状形成的纳米结构薄膜形成的纳米结构薄膜对骨整合作用的综述

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摘要

Improving the biocompatibility of implants is an extremely important step towards improving their quality. In this review, we recount the technological and biological process for coating implants with thin films enriched in titanium carbide (TiC), which provide improved cell growth and osseointegration. At first, we discuss the use of a Pulsed Laser Ablation Deposition, which produced films with a good biocompatibility, cellular stimulation and osseointegration. We then describe how Ion Plating Plasma Assisted technology could be used to produce a nanostructured layer composed by graphitic carbon, whose biocompatibility is enhanced by titanium oxides and titanium carbide. In both cases, the nanostructured coating was compact and strongly bound to the bulk titanium, thus particularly useful to protect implants from the harsh oxidizing environment of biological tissues. The morphology and chemistry of the nanostructured coating were particularly desirable for osteoblasts, resulting in improved proliferation and differentiation. The cellular adhesion to the TiC-coated substrates was much stronger than to uncoated surfaces, and the number of philopodia and lamellipodia developed by the cells grown on the TiC-coated samples was higher. Finally, tests performed on rabbits confirmed in vivo that the osseointegration process of the TiC-coated implants is more efficient than that of uncoated titanium implants.
机译:改善植入物的生物相容性是提高植入物质量的极其重要的一步。在这篇综述中,我们讲述了用富含碳化钛(TiC)的薄膜涂覆植入物的技术和生物过程,从而改善了细胞的生长和骨整合。首先,我们讨论脉冲激光烧蚀沉积的使用,该沉积产生具有良好生物相容性,细胞刺激和骨整合的膜。然后,我们将描述如何使用离子镀等离子体辅助技术来生产由石墨碳组成的纳米结构层,其碳纳米管的生物相容性会被氧化钛和碳化钛增强。在这两种情况下,纳米结构涂层都是致密的并且牢固地结合在大量的钛上,因此特别适用于保护植入物免受生物组织的苛刻氧化环境的影响。纳米结构涂层的形态和化学性质对于成骨细胞特别理想,从而导致增殖和分化得到改善。细胞对TiC涂层基质的粘附力比未涂层表面强得多,并且在TiC涂层样品上生长的细胞所形成的菲氏菌和lamellipodia的数目更高。最后,在兔子身上进行的测试证实了体内的TiC涂层植入物的骨整合过程比未涂层的钛植入物更有效。

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