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Bioactive glass containing 90% SiO 2 2 in hard tissue engineering: An in vitro and in vivo characterization study

机译:在硬组织工程中含有90%SiO 2 2的生物活性玻璃:体外和体内表征研究

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Abstract Bioactive glass has been proved to have many applications in bioengineering due to its bone regenerative properties. In this work, an innovative, highly resorbable bioactive glass containing 90% SiO 2 (BG90) to be used as a bone substitute was developed. The BG90 was synthetized by the sol–gel process with the dry step at room temperature. The biomaterial showed in vitro and in vivo bioactivities even with silica content up to 90%. Moreover, the BG90 presented high porosity and surface area due to its homogenously interconnected porous network. In vitro, it was observed to have high cell viability and marked osteoblastic differentiation of rat bone marrow‐derived cells when in contact with BG90 ion extracts. The BG90 transplantation into rat tibia defects was analysed at 1, 2, 3, 4, 7, and 10?weeks post‐operatively and compared with the defects of negative (no graft) and positive (autogenous bone graft) controls. After 4?weeks of grafting, the BG90 was totally resorbed and induced higher bone formation than did the positive control. Bone morphogenetic protein 2 (BMP‐2) expression at the grafting site peaked at 1?week and decreased similarly after 7?weeks for all groups. Only the BG90 group was still exhibiting BMP‐2 expression in the last experimental time. Our data demonstrated that the BG90 could be an attractive candidate to provide useful approaches in hard‐tissue bioengineering.
机译:由于其骨再生性能,已被证明已经证明了生物活性玻璃在生物内部具有许多应用。在这项工作中,开发了一种含有90%SiO 2(BG90)的创新,高度可再吸收的生物活性玻璃,以用作骨替代品。通过溶胶 - 凝胶工艺合成BG90,在室温下用干燥步骤。生物材料在体外和体内生物活化中表现,即使二氧化硅含量高达90%。此外,由于其均匀互连的多孔网络,BG90呈现出高孔隙率和表面积。在体外,当与BG90离子提取物接触时,观察到具有高细胞活力并标记大鼠骨髓衍生细胞的骨细胞分化。在可操作性地分析在1,2,3,4,7和10℃的大鼠胫骨缺陷中的BG90移植,并与阴性(无移植物)和阳性(自骨骨移植物)对照的缺陷进行比较。在嫁接4周后,BG90完全被吸收并诱导较高的骨形成比阳性对照。在接枝位点的骨形态发生蛋白2(BMP-2)表达在1℃下达到峰值,并且在7次占所有群体的7周后显着降低。只有BG90组仍在上次实验时间中表现出BMP-2表达。我们的数据表明,BG90可能是一个有吸引力的候选者,以提供硬组织生物工程的有用方法。

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