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Effects of 20% demineralization on surface physical properties of compact bone scaffold and bone remodeling response at interface after orthotopic implantation.

机译:20%脱矿对原位植入后紧密骨支架表面物理特性和界面重塑反应的影响。

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摘要

To enhance osteointegration with preservation of mechanical strength, a surface modification technique using 20% surface demineralization in a controlled manner was applied to custom-built cylindrical bio-derived compact bones (20% surface-demineralized cylindrical compact bio-derived bone scaffold: SDCBS); an undemineralized version was the control. The micro-surface topography of the two types of bone scaffolds was characterized by atomic force microscopy (AFM) and scanning electron microscopy (SEM). 20% demineralization led to significant increases in surface roughness (38.19%, P=0.001) and surface area (15.1%, P=0.030), compared with the control group's, while the decrease in mechanical properties was not statistically significant. Results of orthotopic implantation for 9 months demonstrated that 20% surface demineralization caused significantly rapid and homogeneous bone remodeling at the interface compared to control and led to a significantly rapid osteointegration of SDCBS with the host bone at the early and intermediate stages of osteointegration. The study indicates the potential of SDCBS in repairing clinical bone defects, and would help direct the use of various processes of biomaterials to support defect repairs within osseous sites.
机译:为了增强骨整合并保持机械强度,将表面改性技术以可控的方式使用20%的表面脱矿质技术应用于定制的圆柱形生物来源的致密骨(20%表面脱矿质的圆柱形生物来源的致密骨支架:SDCBS) ;控件采用的是非矿化版本。两种类型的骨支架的微观表面形貌通过原子力显微镜(AFM)和扫描电子显微镜(SEM)表征。与对照组相比,去矿质20%导致表面粗糙度(38.19%,P = 0.001)和表面积(15.1%,P = 0.030)显着增加,而机械性能的降低在统计学上没有统计学意义。原位植入9个月的结果表明,与对照组相比,20%的表面脱矿质导致界面处的骨显着快速而均匀地重构,并导致SDCBS与骨整合的早期和中期显着快速地骨整合。该研究表明,SDCBS在修复临床骨缺损方面具有潜力,并且将有助于指导生物材料的各种工艺的使用,以支持骨部位内的缺损修复。

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