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The role of MgO on thermal properties, structure and bioactivity of bioactive glass coating for dental implants

机译:MgO对牙科植入物生物活性玻璃涂层的热性能,结构和生物活性的作用

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The successful application of bioactive glasses as a coating for titanium implants to improve osseointegration is dependent on achieving a thermal expansion coefficient (TEC) match between the two phases. Many studies have indicated that magnesium affects the thermal and structural properties of a glass. However, its effect on bioactivity of bioactive glasses is still under debate. In this study, we characterize the effect of magnesium on the thermal properties, structure and bioactivity of glasses containing MgO. Seven glasses with different MgO concentrations have been synthesized by melt-derived technique. All these glasses contain SiO _2, CaO, MgO, ZnO, Na _2O, K _2O and P _2O _5 and have been characterized by X-ray diffraction (XRD), differential scanning calirometry (DSC) and dilatometry. Additionally, the oxygen density and bulk density have been investigated. The bioactivity of the MgO glass series was evaluated in simulated body fluid (SBF) and Tris-buffer solution. The results indicate that magnesium suppresses crystallization and decreases TEC, glass transition temperature (T _g) and softening (T _s) temperature. Oxygen density increases proportionally with MgO content; whereas glass density decreases. After different time points, XRD and Fourier transform infra-red spectroscopy (FTIR) show that magnesium does not inhibit the apatite forming ability of the glasses, but retards the time of apatite deposition. The glass coatings of this series exhibit clear clinical application for use as a functional barrier: osteoblastic attachment and growth was poor, however, fibroblastic biocompatibility was good.
机译:生物活性玻璃作为钛植入物涂层以改善骨整合的成功应用取决于实现两相之间的热膨胀系数(TEC)匹配。许多研究表明,镁会影响玻璃的热和结构性能。然而,其对生物活性玻璃的生物活性的影响仍在争论中。在这项研究中,我们表征了镁对含MgO的玻璃的热性能,结构和生物活性的影响。通过熔融衍生技术已经合成了七种具有不同MgO浓度的玻璃。所有这些玻璃均包含SiO _2,CaO,MgO,ZnO,Na _2O,K _2O和P _2O _5,并通过X射线衍射(XRD),差示扫描量热法(DSC)和膨胀计进行了表征。另外,已经研究了氧密度和堆积密度。在模拟体液(SBF)和Tris-buffer溶液中评估了MgO玻璃系列的生物活性。结果表明,镁抑制结晶并降低TEC,玻璃化转变温度(T _g)和软化温度(T ss)。氧气密度与MgO含量成正比;而玻璃密度降低。在不同的时间点之后,XRD和傅立叶变换红外光谱(FTIR)表明镁不会抑制玻璃的磷灰石形成能力,但会延迟磷灰石的沉积时间。该系列的玻璃涂层在用作功能性屏障方面表现出明显的临床应用:成骨细胞附着和生长不良,但是成纤维细胞的生物相容性良好。

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