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Biocompatibility and Inflammatory Potential of Titanium Alloys Cultivated with Human Osteoblasts, Fibroblasts and Macrophages

机译:人类成骨细胞,成纤维细胞和巨噬细胞培养的钛合金的生物相容性和炎性潜能

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摘要

The biomaterials used to maintain or replace functions in the human body consist mainly of metals, ceramics or polymers. In orthopedic surgery, metallic materials, especially titanium and its alloys, are the most common, due to their excellent mechanical properties, corrosion resistance, and biocompatibility. Aside from the established Ti6Al4V alloy, shape memory materials such as nickel-titanium (NiTi) have risen in importance, but are also discussed because of the adverse effects of nickel ions. These might be reduced by specific surface modifications. In the present in vitro study, the osteoblastic cell line MG-63 as well as primary human osteoblasts, fibroblasts, and macrophages were cultured on titanium alloys (forged Ti6Al4V, additive manufactured Ti6Al4V, NiTi, and Diamond-Like-Carbon (DLC)-coated NiTi) to verify their specific biocompatibility and inflammatory potential. Additive manufactured Ti6Al4V and NiTi revealed the highest levels of metabolic cell activity. DLC-coated NiTi appeared as a suitable surface for cell growth, showing the highest collagen production. None of the implant materials caused a strong inflammatory response. In general, no distinct cell-specific response could be observed for the materials and surface coating used. In summary, all tested titanium alloys seem to be biologically appropriate for application in orthopedic surgery.
机译:用于维持或替代人体功能的生物材料主要由金属,陶瓷或聚合物组成。在整形外科手术中,金属材料,尤其是钛及其合金,由于其优异的机械性能,耐腐蚀性和生物相容性而最为常见。除了已建立的Ti6Al4V合金外,诸如镍钛(NiTi)之类的形状记忆材料的重要性也有所提高,但由于镍离子的不利影响,也进行了讨论。这些可以通过特定的表面改性来减少。在目前的体外研究中,将成骨细胞系MG-63以及人类原代成骨细胞,成纤维细胞和巨噬细胞培养在钛合金(锻造Ti6Al4V,添加剂制造的Ti6Al4V,NiTi和类金刚石碳(DLC)- NiTi涂层)以验证其特定的生物相容性和炎症潜能。添加剂制造的Ti6Al4V和NiTi显示出最高水平的代谢细胞活性。 DLC涂层的NiTi似乎是细胞生长的合适表面,显示出最高的胶原蛋白产量。没有一种植入物材料引起强烈的炎症反应。通常,对于所使用的材料和表面涂层,没有观察到明显的细胞特异性应答。总之,所有经过测试的钛合金在生物学上似乎都适合在整形外科中使用。

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