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Strontium- and Zinc-Containing Bioactive Glass and Alginates Scaffolds

机译:含锶和锌的生物活性玻璃和藻酸盐支架

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摘要

With an increasingly elderly population, there is a proportionate increase in bone injuries requiring hospitalization. Clinicians are increasingly adopting tissue-engineering methods for treatment due to limitations in the use of autogenous and autologous grafts. The aim of this study was to synthesize a novel, bioactive, porous, mechanically stable bone graft substitute/scaffold. Strontium- and zinc-containing bioactive glasses were synthesized and used with varying amounts of alginate to form scaffolds. Differential scanning calorimetric analysis (DSC), FTIR, XRD, and NMR techniques were used for the characterization of scaffolds. SEM confirmed the adequate porous structure of the scaffolds required for osteoconductivity. The incorporation of the bioactive glass with alginate has improved the compressive strength of the scaffolds. The bioactivity of the scaffolds was demonstrated by an increase in the pH of the medium after the immersion of the scaffolds in a Tris/HCl buffer and by the formation of orthophosphate precipitate on scaffolds. The scaffolds were able to release calcium, strontium and zinc ions in the Tris/HCl buffer, which would have a positive impact on osteogenesis if tested in vivo.
机译:随着老年人口的增加,需要住院的骨伤也有一定比例的增加。由于自体和自体移植物使用的限制,临床医生越来越多地采用组织工程方法进行治疗。这项研究的目的是合成一种新型的,具有生物活性,多孔,机械稳定的骨移植替代物/支架。合成了含锶和锌的生物活性玻璃,并与不同量的藻酸盐一起使用以形成支架。差示扫描量热分析(DSC),FTIR,XRD和NMR技术用于表征支架。 SEM证实了骨传导性所需的支架具有足够的多孔结构。生物活性玻璃与藻酸盐的结合改善了支架的抗压强度。支架的生物活性通过将支架浸入Tris / HCl缓冲液后介质pH值的增加以及支架上正磷酸盐沉淀的形成来证明。支架能够在Tris / HCl缓冲液中释放钙,锶和锌离子,如果在体内进行测试,将对成骨产生积极影响。

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