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Accelerated and enhanced osteointegration of MAO-treated implants: histological and histomorphometric evaluation in a rabbit model

机译:加速和增强的MAO植入物的骨整合:在兔模型中的组织学和组织形态计量学评价

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摘要

Microarc oxidation (MAO) has become a promising technique for the surface modification of implants. Therefore, the aims of this study were to further quantitatively and qualitatively evaluate the osteointegration abilities of MAO-treated and smooth surface (SF) implants in vivo and to investigate the areas in which the superiority of MAO-treated implants are displayed. In a rabbit model, a comprehensive histomorphological, osteogenic, mineralizational, and integrative assessment was performed using light microscopy, fluorescence microscopy, confocal laser scanning microscopy, and radiographic analyses. Compared with the SF groups, the MAO-treated groups exhibited more active contact osteogenesis, as well as distant osteogenesis, under fluorescence examination, the mineral apposition rate was found to be greater for all of the MAO-treated implants, and the osteointegration index (OI) value was greater in the MAO-treated groups at different times. In conclusion, the calcium-rich amorphous layer created by MAO provided a better environment for osteointegration, with more active contact osteogenesis, a more rapid mineral apposition rate and greater OI values.
机译:微弧氧化(MAO)已成为用于植入物表面改性的有前途的技术。因此,本研究的目的是进一步定量和定性评估体内经MAO处理的光滑表面(SF)植入物的骨整合能力,并研究其中经MAO处理的植入物具有优越性的领域。在兔模型中,使用光学显微镜,荧光显微镜,共聚焦激光扫描显微镜和射线照相分析进行了全面的组织形态,成骨,矿化和综合评估。与SF组相比,经MAO处理的组在荧光检查下表现出更活跃的接触性成骨以及远距离成骨,发现所有经MAO处理的植入物的矿物质沉积率更高,并且骨整合指数(在不同时间,MAO治疗组的OI)值较高。总之,由MAO产生的富含钙的无定形层为骨整合提供了更好的环境,具有更活跃的接触成骨作用,更快的矿物质沉积速率和更大的OI值。

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