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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Role of magnesium oxide and strontium oxide as modifiers in silicate-based bioactive glasses: Effects on thermal behaviour, mechanical properties and in-vitro bioactivity
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Role of magnesium oxide and strontium oxide as modifiers in silicate-based bioactive glasses: Effects on thermal behaviour, mechanical properties and in-vitro bioactivity

机译:氧化镁和氧化锶的作用作为硅酸盐的生物活性玻璃中的改性剂:对热行为,机械性能和体外生物活性的影响

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The composition of a CaO-rich silicate bioglass (BG_Ca-Mix, in mol%: 23 Na2O; 23 K2O; 45.6 CaO; 2.6 P2O5; 47.2 SiO2) was modified by replacing a fixed 10 mol% of CaO with MgO or SrO or fifty-fifty MgO-SrO. The thermal behaviour of the modified glasses was accurately evaluated via differential thermal analysis (DTA), heating microscopy and direct sintering tests. The presence of MgO and/or SrO didn't interfere with the thermal stability of the parent glass, since all the new glasses remained completely amorphous after sintering (treatment performed at 753 degrees C for the glass with MgO; at 750 degrees C with SrO; at 759 degrees C with MgO and SrO). The sintered samples achieved good mechanical properties, with a Young's modulus ranging between 57.9 +/- 6.7 for the MgO-SrO modified composition and 112.6 +/- 8.0 GPa for the MgO-modified one. If immersed in a simulated body fluid (SBF), the modified glasses after sintering retained the strong apatite forming ability of the parent glass, in spite of the presence of MgO and/or SrO. Moreover, the sintered glasses, tested with MLO-Y4 osteocytes by means of a multi-parametrical approach, showed a good bioactivity in vitro, since neither the glasses nor their extracts caused any negative effect on cell viability or any inhibition on cell growth. The best results were achieved by the MgO-modified glasses, both BGMIX_Mg and BGMIX_MgSr, which were able to exert a strong stimulating effect on the cell growth, thus confirming the beneficial effect of MgO on the glass bioactivity. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过用MgO或SRO或SRO或50℃替换固定的10mol%的CAO来修饰富含氧化硅酸盐的硅酸盐生物胶(BG_CA-MIX,以摩尔%:23K2O; 23K2O; 45.6 CAO; 2.6 P2O5; 47.2 SIO2)进行修饰。 - 漂细的MgO-SRO。通过差分热分析(DTA),加热显微镜和直接烧结试验精确评估改性玻璃的热行为。 MgO和/或SrO的存在并没有干扰母体玻璃的热稳定性,因为烧结后所有新眼镜都保持完全无定形(用MgO的玻璃为753℃进行;在750℃下进行SRO ;在759摄氏度下,MgO和SRO)。烧结样品实现了良好的机械性能,杨氏模量在57.9 +/- 6.7之间,用于MgO-SRO改性组合物,112.6 +/- 8.0GPa用于MgO改性的。如果浸入模拟的体液(SBF)中,烧结后的改性玻璃保留了母体玻璃的强磷灰石成形能力,尽管存在MgO和/或SRO。此外,通过多参数方法与MLO-Y4骨细胞用MLO-Y4骨细胞测试的烧结玻璃在体外测试了良好的生物活性,因为眼镜和其提取物都不会对细胞活力或对细胞生长的任何抑制引起任何负面影响。最佳结果是由MgO改性的眼镜,BGMix_MG和BGMix_MGSR实现,其能够对细胞生长产生强烈的刺激作用,从而证实了MgO对玻璃生物活性的有益作用。 (c)2016年Elsevier B.v.保留所有权利。

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