首页> 美国卫生研究院文献>Materials >Carbon-Fibre-Reinforced SiC Composite (C/SiSiC) as an Alternative Material for Endoprosthesis: Fabrication Mechanical and In-Vitro Biological Properties
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Carbon-Fibre-Reinforced SiC Composite (C/SiSiC) as an Alternative Material for Endoprosthesis: Fabrication Mechanical and In-Vitro Biological Properties

机译:碳纤维增强的SiC复合材料(C / SiSiC)作为内窥镜替代材料:制备机械和体外生物学特性

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摘要

Particle-induced periprosthetic osteolysis and subsequent aseptic implant loosening are a major cause of compromising the long-term results of total joint replacements. To date, no implant has been able to mirror radically the tribological factors (friction/lubrication/wear) of in vivo tribological pairings. Carbon-Fibre Reinforced SiC-Composites (C/SiSiC), a material primarily developed for brake technology, has the opportunity to fulfil this requirement. Until now, the material itself has not been used in medicine. The aim of this investigation was to test the suitability of C/SiSiC ceramics as a new material for bearing couples in endoprosthetics. After the preparation of the composites flexural strength was determined as well as the Young’s-modulus and the coefficient of friction. To investigate in vitro biological properties, MG 63 and primary human osteoblasts were cultured on C/SiSiC composites. To review the proliferation, the cytotoxicity standardized tests were used. The cell morphology was observed by light microscopy, ESEM, confocal and 3D-laserscanning microscopy. C/SiSiC possesses a high resistance to wear. Cells exhibited no significant alterations in morphology. Vitality was not impaired by contact with the ceramic composite. There was no higher cytotoxicity to observe. Regarding these results, C/SiSiC ceramics seem to be biologically and mechanically appropriate for orthopaedic applications.
机译:颗粒引起的假体周围骨溶解以及随后的无菌种植体松动是损害全关节置换的长期结果的主要原因。迄今为止,还没有植入物能够从根本上反映体内摩擦学配对的摩擦学因素(摩擦/润滑/磨损)。碳纤维增强SiC复合材料(C / SiSiC)是一种主要用于制动技术的材料,可以满足这一要求。到目前为止,该材料本身尚未用于医学领域。这项研究的目的是测试C / SiSiC陶瓷是否适合用作内部修复体中的轴承对的新材料。制备复合材料后,测定挠曲强度以及杨氏模量和摩擦系数。为了研究体外生物学特性,将MG 63和人类原代成骨细胞培养在C / SiSiC复合材料上。为了审查增殖,使用了细胞毒性标准化测试。通过光学显微镜,ESEM,共聚焦和3D激光扫描显微镜观察细胞形态。 C / SiSiC具有很高的耐磨性。细胞在形态上没有表现出明显的改变。与陶瓷复合材料的接触不会损害生命力。没有观察到更高的细胞毒性。关于这些结果,C / SiSiC陶瓷似乎在生物学和机械上都适合骨科应用。

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