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Structure optimisation and biological evaluation of bone scaffolds prepared by co-sintering of silicate and phosphate glasses

机译:硅酸盐和磷酸盐玻璃共烧结制备的骨支架的结构优化和生物学评价

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摘要

A degradable phosphate glass (ICEL) and a bioactive silicate glass (CEL2) were mixed in different ratios (wt-%: 100%ICEL, 70%ICEL-30%CEL2, 30%ICEL-70%CEL2, 100%CEL2; codes 100-0, 70-30, 30-70, 0-100) and then co-sintered to obtain three-dimensional porous scaffolds by gel casting foaming. Thermal analyses were carried out on the glass mixtures and were used as a starting point for the optimisation of the scaffold sintering treatment. The microcomputed tomography and field emission scanning electron microscope analyses allowed the selection of the optimal sintering temperature to obtain an adequate structure in terms of total and open porosity. The scaffolds showed an increasing solubility with increasing ICEL glass content, and for 30-70 and 0-100, the precipitation of hydroxyapatite in simulated body fluid was observed. In vitro tests indicated that all the scaffolds showed no cytotoxic effect. The co-sintering of silicate and phosphate glasses showed to be a promising strategy to tailor the scaffold osteoconductivity, degradation and bioactivity
机译:将可降解的磷酸盐玻璃(ICEL)和生物活性硅酸盐玻璃(CEL2)以不同的比例混合(wt-%:100%ICEL,70%ICEL-30%CEL2、30%ICEL-70%CEL2、100%CEL2;代码100-0、70-30、30-70、0-100),然后通过凝胶浇铸发泡共烧结以获得三维多孔支架。对玻璃混合物进行了热分析,并将其作为优化支架烧结处理的起点。显微计算机断层扫描和场发射扫描电子显微镜分析允许选择最佳烧结温度,以获得总孔隙率和开放孔隙率的适当结构。支架显示出随着ICEL玻璃含量的增加而增加的溶解度,并且对于30-70和0-100,在模拟体液中观察到羟基磷灰石的沉淀。体外试验表明,所有支架均无细胞毒性作用。硅酸盐和磷酸盐玻璃的共烧结显示出定制支架骨传导性,降解和生物活性的一种有前途的策略

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