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TiO 纳米网络在粗糙钛表面增强骨生成的体外和体内研究

TiO Nanonetwork on Rough Ti Enhanced Osteogenesis In Vitro and In Vivo.

机构信息

Department of Dentistry, National Yang Ming Chiao Tung University, Taipei, Taiwan.

Department of Medical Research, Chung Shan Medical University Hospital, Taichung, Taiwan.

出版信息

J Dent Res. 2021 Sep;100(10):1186-1193. doi: 10.1177/00220345211001017. Epub 2021 Mar 20.

Abstract

The objective in this study was to enhance osteogenic responses (in vitro and in vivo) to roughened titanium (Ti) dental implants through the formation of superhydrophilic TiO nanonetwork surface structure. Sandblasting and acid etching (SLA) was used to roughen the Ti surface. An electrochemical anodization process was then used to form a superhydrophilic TiO nanonetwork on the SLA Ti surfaces. The pore size of the nanonetwork structure ranged from a few nanometers to more than 100 nm, which is on the same scale as many biological species. Human bone marrow mesenchymal stem cells were used as an in vitro test model. The TiO nanonetwork structure was shown to have a significantly positive effect on hydrophilicity, protein adsorption, cell adhesion, cell migration, cell mineralization, and the gene and protein expression of osteogenic markers. The osseointegration of an anodized SLA screw-type Ti dental implant was investigated in vivo via implantation in the femur of New Zealand white rabbits for durations of 4 or 12 wk. The presence of a superhydrophilic surface TiO nanonetwork was shown to significantly enhance the bone-to-implant contact of the roughened SLA screw-type Ti dental implants. Overall, the proposed superhydrophilic TiO nanonetwork structure on the roughened SLA Ti surface proved highly effective in enhancing osteogenic responses in vitro and in vivo.

摘要

本研究的目的是通过形成超亲水 TiO2纳米网络表面结构来增强粗糙化钛(Ti)牙科植入物的成骨反应(体外和体内)。喷砂酸蚀(SLA)用于粗糙化 Ti 表面。然后,通过电化学阳极氧化工艺在 SLA Ti 表面上形成超亲水 TiO2纳米网络。纳米网络结构的孔径范围从几纳米到 100nm 以上,与许多生物物种的规模相当。人骨髓间充质干细胞被用作体外测试模型。结果表明,TiO2纳米网络结构对亲水性、蛋白质吸附、细胞黏附、细胞迁移、细胞矿化以及成骨标志物的基因和蛋白表达具有显著的积极影响。通过将阳极氧化的 SLA 螺旋式 Ti 牙科植入物植入新西兰白兔股骨中 4 或 12 周来研究体内的骨整合情况。结果表明,超亲水表面 TiO2纳米网络的存在显著增强了粗糙化 SLA 螺旋式 Ti 牙科植入物的骨与植入物的接触。总体而言,粗糙化 SLA Ti 表面上提出的超亲水 TiO2纳米网络结构在体外和体内都非常有效地增强了成骨反应。

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