首页> 外文期刊>Acta biomaterialia >Controlled electro-implementation of fluoride in titanium implant surfaces enhances cortical bone formation and mineralization.
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Controlled electro-implementation of fluoride in titanium implant surfaces enhances cortical bone formation and mineralization.

机译:钛植入物表面中氟化物的受控电实现可增强皮质骨的形成和矿化作用。

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摘要

Previous studies have shown that bone-to-implant attachment of titanium implants to cortical bone is improved when the surface is modified with hydrofluoric acid. The aim of this study was to investigate if biological factors are involved in the improved retention of these implants. Fluoride was implemented in implant surfaces by cathodic reduction with increasing concentrations of HF in the electrolyte. The modified implants were placed in the cortical bone in the tibias of New Zealand white rabbits. After 4 weeks of healing, wound fluid collected from the implant site showed lower lactate dehydrogenase activity and less bleeding in fluoride-modified implants compared to control. A significant increase in gene expression levels of osteocalcin and tartrate-resistant acid phosphatase (TRAP) was found in the cortical bone attached to Ti implants modified with 0.001 and 0.01 vol.% HF, while Ti implants modified with 0.1% HF showed only induced TRAP mRNA levels. These results were supported by the performed micro-CT analyses. The volumetric bone mineral density of the cortical bone hosting Ti implants modified with 0.001% and 0.01% HF was higher both in the newly woven bone (<100 microm from the interface) and in the older Haversian bone (>100 microm). In conclusion, the modulation of these biological factors by surface modification of titanium implants with low concentrations of HF using cathodic reduction may explain their improved osseointegration properties.
机译:先前的研究表明,当表面用氢氟酸修饰时,钛植入物在皮质骨上的从骨头到植入物的附着将得到改善。这项研究的目的是调查是否生物学因素参与了这些植入物的改善保留。随着电解质中HF浓度的增加,阴极还原可在植入物表面实现氟化物。将改良的植入物放置在新西兰白兔胫骨的皮质骨中。愈合4周后,与对照相比,从植入物部位收集的伤口液显示出较低的乳酸脱氢酶活性,氟化物修饰的植入物出血较少。发现在用0.001和0.01 vol。%HF修饰的Ti植入物附着的皮质骨中,骨钙素和抗酒石酸酸性磷酸酶(TRAP)的基因表达水平显着增加,而用0.1%HF修饰的Ti植入物显示仅诱导TRAP。 mRNA水平。这些结果得到了进行的微CT分析的支持。无论是新编织的骨骼(距界面<100微米)还是较老的哈弗斯骨(> 100微米),用0.001%和0.01%HF改性的托管Ti植入物的皮质骨的体积骨矿物质密度均较高。总之,通过使用阴极还原对低浓度的HF钛植入物进行表面修饰,可以调节这些生物因子,这可以解释其改善的骨整合特性。

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