首页> 外文期刊>Scientific reports. >In vitro Evaluation of Porous borosilicate, borophosphate and phosphate Bioactive Glasses Scaffolds fabricated using Foaming Agent for Bone Regeneration
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In vitro Evaluation of Porous borosilicate, borophosphate and phosphate Bioactive Glasses Scaffolds fabricated using Foaming Agent for Bone Regeneration

机译:使用发泡剂进行多孔硼硅酸盐,硼磷酸盐和磷酸盐生物活性玻璃支架的体外评价,使用发泡剂进行骨再生

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In this work, glasses within the borosilicate borophosphate and phosphate family were sintered into 3D porous scaffolds using 60 and 70 vol. % NH4(HCO3) as a foaming agent. All scaffolds produced remained amorphous; apart from one third of the glasses which crystallized. All produced scaffolds had porosity 50% and interconnected pores in the range of 250–570?μm; as evidenced by μCT. The in-vitro dissolution of the scaffolds in SBF and changes in compression were assessed as a function of immersion time. The pH of the solution containing the borosilicate scaffolds increased due to the typical non-congruent dissolution of this glass family. Borophosphate and phosphate scaffolds induced a decrease in pH upon dissolution attributed to the congruent dissolution of those materials and the large release of phosphate within the media. As prepared, scaffolds showed compressive strength of 1.29?±?0.21, 1.56?±?0.63, 3.63?±?0.69?MPa for the borosilicate, borophosphate and phosphate samples sintered with 60 vol. % NH4 (HCO3), respectively. Evidence of hydroxyapatite precipitation on the borosilicate glass scaffolds was shown by SEM/EDS, XRD and ICP-OES analysis. The borophosphate scaffolds remained stable upon dissolution. The phosphate scaffolds were fully crystallized, leading to very large release of phosphate in the media.
机译:在这项工作中,使用60和70体积的硼磷酸硼磷酸硼酸硼酸盐和磷酸盐家族的眼镜烧结到3D多孔支架中。 %NH4(HCO3)作为发泡剂。所有的支架仍然是无定形的;除了结晶的三分之一的眼镜之外。所有生产的支架孔隙率> 50%,孔隙率在250-570Ωμm的范围内;如μct所证明。根据浸渍时间的函数评估支架在SBF中的体外溶解和压缩的变化。由于该玻璃家族的典型非全体溶解,含有硼硅酸盐支架的溶液的pH增加。硼磷酸盐和磷酸盐支架在溶解时诱导pH的降低,归因于这些材料的一致溶解和培养基内的磷酸盐的大释放。如准备的那样,支架显示抗压强度为1.29≤2.29≤0.21,1.56?±0.63,3.63?±0.69.硼硅酸盐,硼磷酸盐和磷酸盐用60体积烧结。分别为NH4(HCO3)。通过SEM / EDS,XRD和ICP-OES分析显示硼硅酸盐玻璃支架上羟基磷灰石沉淀的证据。脱磷酸磷酸盐支架在溶解时保持稳定。磷酸盐支架完全结晶,导致培养基中的磷酸盐非常大的释放。

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