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Role of surface finishing on the in vitro biological properties of a silicon nitride-titanium nitride (Si3N4-TiN) composite

机译:表面处理对氮化硅-氮化钛(Si3N4-TiN)复合材料的体外生物学特性的作用

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摘要

Silicon nitride (Si3N4) has been introduced clinically as an orthopedic biomaterial for interbody fusion devices and in joint replacements. However, the production of complex shapes through conventional mechanical machining is difficult and expensive and limits interesting applications. Thus, several electrically conductive reinforcements to the Si3N4 matrix, like TiN, have been proposed, generating composites suitable to be wrought by electrical discharge machining (EDM). In this study, Si3N4-TiN with high strength, low density, and good electric conductivity wrought by EDM was studied. The role of surface finishing was investigated comparing the interface generated during the EDM process to that resulting from further polishing. The different topographical features were assessed by electron microscopy, energy dispersive X-ray spectrometry, and profilometry. Surface wettability was also determined based on the measurement of the OCA of water and diiodomethane. The biological responses induced in MC3T3 cells, a widely diffused osteoblast model, were correlated with the surface pattern. The unpolished samples could promote better cell viability, with a more relevant effect on the cytoskeleton arrangement as highlighted by numerous cytoplasmic extensions and filopodia-like structures and the high number of focal adhesions, while MC3T3 cells grown on polished Si3N4-TiN specimens displayed a flat morphology. In addition, the unpolished Si3N4-TiN increased osteocalcin production and calcium deposition. Taken together, these data support the biocompatibility and in vitro osteogenic properties of the electroconductive Si3N4-TiN investigated. Further in vivo studies are required to explore the possible use of bone implants directly obtained by EDM.
机译:氮化硅(Si3N4)已作为一种骨科生物材料在临床上引入人体融合设备,并已用于关节置换。然而,通过常规机械加工生产复杂形状是困难且昂贵的,并且限制了令人感兴趣的应用。因此,已经提出了对Si3N4基体的几种导电增强剂,例如TiN,产生了适合通过放电加工(EDM)加工的复合材料。在这项研究中,研究了具有高强度,低密度和良好电导率的Si3N4-TiN。比较了EDM过程中产生的界面和进一步抛光产生的界面,研究了表面处理的作用。通过电子显微镜,能量色散X射线光谱法和轮廓测定法评估了不同的地形特征。还基于对水和二碘甲烷的OCA的测量来确定表面润湿性。 MC3T3细胞(一种广泛扩散的成骨细胞模型)中诱导的生物学反应与表面模式相关。未抛光的样品可以促进更好的细胞活力,对细胞骨架排列具有更相关的影响,如众多的细胞质延伸和丝状伪足结构以及大量的粘着斑所突出,而在抛光的Si3N4-TiN标本上生长的MC3T3细胞则显示出平坦的形态学。此外,未抛光的Si3N4-TiN增加了骨钙素的产生和钙的沉积。总之,这些数据支持所研究的导电Si3N4-TiN的生物相容性和体外成骨特性。需要进一步的体内研究以探索通过EDM直接获得的骨植入物的可能用途。

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