Department of Oral Biomaterials and Technology, Showa University School of Dentistry, 1-5-8 Hatanodai, Shinagawa-ku, Tokyo 142-8555, Japan.
Biomaterials. 2010 Nov;31(33):8546-55. doi: 10.1016/j.biomaterials.2010.07.098. Epub 2010 Sep 16.
Photo-functionalized radical reactions on TiO(2) have been correlated with adsorption of organic impurities and decreasing hydrophilicity of titanium-based biomaterials. Such reactive oxygen species (ROS) spontaneously generated on oxidized titanium surfaces may also have important roles against time-dependent degradation of biological ability and adherent micro-organisms. This study examined in vitro biological ability as a function of time and antimicrobial activity on oxidized titanium surfaces without photo-functionalization. Mechanically polished titanium and thermally oxidized titanium surfaces that had been stored for 4 wks showed adsorbed organic impurities with decreased surface hydrophilicity. Even after the storage period, anodically oxidized titanium surfaces enabled super-hydrophilicity without adsorption of organic impurities, because of the ROS and the hydrophilic functional groups generated on the surfaces. The osteogenic gene expressions of osteoblasts cultured on anodically oxidized titanium surfaces with or without storage were significantly higher than those on thermally oxidized titanium and polished titanium surfaces. Titanium surfaces anodically oxidized in a solution with chloride achieved antimicrobial activity against an oral microorganism due to the amount of ROS generated on the surface. Thus, titanium anodically oxidized in solution with chloride may have potential use for titanium-based internal fixation devices.
TiO2 上的光功能化自由基反应与有机杂质的吸附和钛基生物材料亲水性的降低有关。在氧化钛表面自发产生的这种活性氧物质 (ROS) 也可能对生物能力随时间的降解和附着的微生物具有重要作用。本研究检查了在没有光功能化的情况下,氧化钛表面随时间变化的体外生物能力和抗菌活性。经过 4 周储存的机械抛光钛和热氧化钛表面显示出吸附的有机杂质和表面亲水性降低。即使在储存期之后,由于表面上产生的 ROS 和亲水性官能团,阳极氧化的钛表面能够实现超亲水性而没有有机杂质的吸附。在有或没有储存的情况下在阳极氧化钛表面培养的成骨细胞的成骨基因表达明显高于热氧化钛和抛光钛表面。由于在表面上产生的 ROS 的量,在含有氯离子的溶液中阳极氧化的钛表面对口腔微生物具有抗菌活性。因此,在含有氯离子的溶液中阳极氧化的钛可能具有用于钛基内固定装置的潜力。