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An In Vivo Study in Rat Femurs of Bioactive Silicate Coatings on Titanium Dental Implants

机译:钛牙种植体上生物活性硅酸盐涂层在大鼠股骨中的体内研究

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摘要

Silica-based ceramics have been proposed for coating purposes to enhance dental and orthopedic titanium (Ti) implant bioactivity. The aim of this study was to investigate the influence of sphene-based bioceramic (CaO.TiO .SiO ) coatings on implant osseointegration in vivo. Sphene coatings were obtained from preceramic polymers and nano-sized active precursors and deposited by an automatic airbrush. Twenty customized Ti implants, ten sphene-coated and ten uncoated rough implants were implanted into the proximal femurs of ten Sprague-Dawley rats. Overall, cortical and cancellous bone-to-implant contact (BIC) were determined using micro-computed tomography (micro-CT) at 14 and 28 days. Moreover, peri-implant bone healing was histologically and histomorphometrically evaluated. The white blood cell count in the synovial fluid of the knee joints, if present, was also assessed. No difference in the BIC values was observed between the sphene-coated and uncoated implants, overall and in the two bone compartments ( > 0.05). Delamination of the coating occurred in three cases. Consistently with micro-CT data, the histological evaluation revealed no differences between the two groups. In addition, no synovial fluid could be collected on the test side, thus confirming sphene biocompatibility. In conclusion, sphene coating was found to be a suitable material for biomedical applications. Further studies are needed to improve coating adhesion to the implants.
机译:已经提出了基于二氧化硅的陶瓷用于涂覆目的,以增强牙科和矫形钛(Ti)植入物的生物活性。这项研究的目的是研究基于Sphene的生物陶瓷(CaO.TiO .SiO)涂层对体内植入物骨整合的影响。 Sphene涂层是由陶瓷前聚合物和纳米级活性前体获得的,并通过自动喷枪沉积。在十只Sprague-Dawley大鼠的股骨近端股骨中植入二十个定制的Ti植入物,十个经表皮涂层和十个未涂覆的粗糙植入物。总体而言,在第14天和第28天使用微型计算机断层扫描(micro-CT)确定了皮质和松质骨与植入物之间的接触(BIC)。此外,从组织学和组织形态学方面评估了种植体周围骨的愈合情况。如果存在的话,还评估了膝关节滑液中的白细胞计数。总体上和在两个骨腔中,在经蝶骨涂层的和未覆层的植入物之间,未观察到BIC值的差异(> 0.05)。在三种情况下发生涂层分层。与微CT数据一致,组织学评估显示两组之间没有差异。另外,在测试侧不能收集滑液,因此证实了蝶泳的生物相容性。总而言之,发现蝶骨涂层是用于生物医学应用的合适材料。需要进一步的研究来改善涂层对植入物的粘附性。

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