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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Early healing of nanothickness bioceramic coatings on dental implants. An experimental study in dogs.
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Early healing of nanothickness bioceramic coatings on dental implants. An experimental study in dogs.

机译:牙科植入物上纳米厚度生物陶瓷涂层的早期修复。狗的实验研究。

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Thick bioceramic coatings like plasma sprayed hydroxyapatite have been shown to increase the overall tissue response and biomechanical fixation of dental implants. However, the presence and potential fracture of a bone-coating-metallic substrate interface at long times after implantation led these implants to fall from favor in clinical practice. The purpose of this study was to evaluate the biomechanical fixation and biological response of Ca- and P-based, 20-50 nm thickness bioceramic deposition on a previously alumina-blasted/acid-etched Ti-6Al-4V implant surface in a dog model. Cylindrical alumina-blasted/acid-etched (AB/AE) (Control, n = 16), and Nanothickness bioceramic coated AB/AE(Nano, n = 16) implant surfaces were surgically placed in dogs proximal tibia and remained for 2 and 4 weeks in vivo. Following euthanization, the implants-in-bone were mounted in epoxy and pullout at a 0.5 mm/min rate. Following mechanical testing, the specimens were decalcified and processed (Hematoxylin and Eosin) for standard transmitted light microscopy evaluation. Percent bone-to-implant contact (BIC) to the pulled out implant surface was determined through computer software. Statistical analyses were performed by one-way ANOVA at 95% level of significance and Tukey's post-hoc multiple comparisons. No significant differences in pullout force were observed (p > 0.88): 2W Control (212.08 +/- 42.96 N), 2W Nano (224.35 +/- 42.97 N), 4W Control (207.07 +/- 42.97 N), and 4W Nano (190.15 +/- 45.94 N). No significant differences in %BIC were observed (p > 0.94): 2W Control (72.66 +/- 8.51), 2W Nano (69.44 +/- 8.51), 4W Control (70.44 +/- 8.51), and 4W Nano (69.11 +/- 9.09). It is shown that 20-50 nm thickness bioceramic depositions onto previously alumina-blasted/acid-etched substrates did not improve the biomechanical fixation and the BIC at early implantation times, and studies concerning shorter and longer implantation times are recommended for confirmation or before a conclusion can be made.
机译:已显示出厚厚的生物陶瓷涂层(如等离子喷涂的羟基磷灰石)可增加牙科植入物的整体组织响应和生物力学固定。但是,植入后很长一段时间内,骨涂层金属基底界面的存在和潜在的断裂导致这些植入物在临床实践中不受欢迎。这项研究的目的是评估狗模型中先前经氧化铝喷砂/酸蚀的Ti-6Al-4V植入物表面上基于Ca和P的20-50 nm厚生物陶瓷沉积的生物力学固定和生物响应。 。将圆柱形氧化铝喷砂/酸蚀(AB / AE)(对照,n = 16)和纳米厚度生物陶瓷涂层的AB / AE(Nano,n = 16)植入物表面通过外科手术放置在胫骨近端的狗中,分别保留2和4体内数周。安乐死后,将骨植入物安装在环氧树脂中,并以0.5 mm / min的速度拔出。机械测试后,将样品脱钙并处理(苏木精和曙红),以进行标准透射光显微镜评估。通过计算机软件确定与拔出的种植体表面的骨对种植体的接触百分比(BIC)。通过单因素方差分析在显着性水平为95%时进行统计分析,并进行Tukey事后多重比较。没有观察到明显的拔出力差异(p> 0.88):2W对照(212.08 +/- 42.96 N),2W纳米(224.35 +/- 42.97 N),4W对照(207.07 +/- 42.97 N)和4W纳米(190.15 +/- 45.94 N)。没有观察到%BIC的显着差异(p> 0.94):2W对照(72.66 +/- 8.51),2W纳米(69.44 +/- 8.51),4W对照(70.44 +/- 8.51)和4W纳米(69.11 + /-9.09)。结果表明,在先前的经氧化铝喷砂/酸蚀的基板上沉积20-50 nm厚度的生物陶瓷并不能改善植入初期的生物力学固定性和BIC,建议进行有关较短和较长植入时间的研究以确认或在植入前进行。可以得出结论。

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