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Effects of Pre-Treatments on Bioactivity of High-Purity Titanium

机译:预处理对高纯钛生物活性的影响

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摘要

Titanium and its alloys are frequently employed in medical and dental clinics due to their good tissue compatibility, including commercially available pure Ti, Ti6A4V, or Ti-15Zr-4Ta-4Nb. Yet, they may behave very differently when in contact with our plasma because of their own chemical composition. The present study was designed to compare the in vitro behavior of highly pure Ti (>99.99%; hpTi) with those of the above titanium specimens when they were subjected to heating in air (HT), H2O2 and heating (CHT), and heating in air after forming grooves on the surface (GT). Since one of the measures of material-tissue compatibility has been in vitro apatite formation in artificial plasma, like simulated body fluid (SBF) of the Kokubo recipe, the apatite deposition in SBF on their surface and in their grooves were examined in terms of the X-ray diffraction, scanning electron microscopy, and energy dispersion X-ray analysis. The results showed that hpTi was as active in in vitro apatite deposition as the other reference titanium samples mentioned above. Moreover, GT specimens of hpTi induced apatite deposition on the platform of the grooves as well as in the grooves. Therefore, hpTi was concluded to have better activity, and to be clinically applicable.
机译:钛及其合金由于其良好的组织相容性而经常用于医疗和牙科诊所,包括市售的纯Ti,Ti6A4V或Ti-15Zr-4Ta-4Nb。但是,由于它们自身的化学成分,它们在与我们的血浆接触时的行为可能会大不相同。本研究旨在比较高纯Ti(> 99.99%; hpTi)与上述钛样品在空气(HT),H2O2和加热(CHT)以及加热条件下的体外行为在表面(GT)上形成凹槽后在空气中流动。由于材料-组织相容性的一种测量方法是在人造血浆中体外形成磷灰石,例如小久保配方的模拟体液(SBF),因此,应根据其表面和沟槽中的磷灰石沉积情况对其进行检查。 X射线衍射,扫描电子显微镜和能量色散X射线分析。结果表明,hpTi在体外磷灰石沉积中的活性与上述其他参考钛样品相同。此外,hpTi的GT标本在槽的平台以及槽中引起了磷灰石的沉积。因此,结论认为hpTi具有更好的活性,并具有临床应用价值。

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