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De novo bone formation on macro/microporous silk and silk/nano-sized calcium phosphate scaffolds

机译:从头/在大孔/微孔丝绸和丝绸/纳米级磷酸钙支架上的骨形成

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摘要

Macro/micro porous silk/nano-sized calcium phosphate scaffolds (SC16) with bioactive and superior physicochemical properties have been recently developed. In this study, we aim at evaluating the new bone formation ability of the SC 16 scaffolds in vivo, using silk fibroin scaffolds (S16) as control. The CaP distribution profile in the scaffolds was characterized by Micro-Computed Tomography. The in vitro mineralization behavior was examined by immersion in Simulated Body Fluid solution from 1 to 14 days. The long-term hydration degree and weight loss ratio of the scaffolds were evaluated by immersion in an Isotonic Saline Solution from 1 month to 1 year. In vivo osteogenesis properties of the scaffolds were screened by implantation into the rat femur defects for 3 weeks. The results showed that the CaP phase distributed homogeneously in the SC16 scaffolds. Mineralization was only observed in SC16 scaffolds, and both scaffolds gradually degraded with time. The staining of the explants showed that new bone formation with higher density was observed in the SC16 scaffolds as compared to S16 scaffolds, guiding the growth of new bone directly onto its surface. These results demonstrated that the SC16 hybrid scaffolds are osteoconductive and can be good candidates for bone tissue engineering as promoted superior de novo bone formation.
机译:最近已经开发了具有生物活性和优异的理化特性的宏观/微孔丝绸/纳米级磷酸钙支架(SC16)。在这项研究中,我们旨在评估使用丝素蛋白支架(S16)作为对照的SC 16支架在体内的新骨形成能力。支架中的CaP分布图通过微计算机断层扫描进行了表征。通过浸入模拟体液溶液中1到14天来检查体外矿化行为。通过在等渗盐溶液中浸泡1个月至1年,评估支架的长期水合度和失重率。通过植入大鼠股骨缺损3周来筛选支架的体内成骨特性。结果表明,CaP相在SC16支架中均匀分布。仅在SC16支架中观察到矿化作用,并且两个支架都随时间逐渐降解。外植体的染色表明,与S16支架相比,在SC16支架中观察到了更高密度的新骨形成,从而指导了新骨直接生长在其表面上。这些结果表明,SC16杂种支架具有骨传导性,并且可以作为骨组织工程的良好候选者,因为它们促进了从头开始的高级成骨。

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