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Preparation and In Vitro Characterization of Polycaprolactone and Demineralized Bone Matrix Scaffolds

机译:聚己内酯和脱矿骨基质支架的制备及体外表征

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Cylindrical porous polycaprolactone (PCL) scaffolds containing 25, 35, and 50 wt% demineralized bone matrix (DBM) were fabricated using a salt-leaching method for application in bone engineering. In the present work, PCL-DBM scaffolds were monitored for calcium and phosphorus deposition in both deionized (DI) water and simulated body fluid (SBF) for time periods of 5, 10, 15, and 20 days at 37°C under constant rotation. An in vitro assessment of the bioactivity of synthetic materials using SBF under physiological conditions can be used as a barometer of scaffold behavior in vivo. DBM, an osteoinductive material, was used to gauge if there was a correlation between the concentration of DBM within a scaffold and the apatite formation on its surface. Biochemical assays, alizarin red S staining, and scanning electron microscopy (SEM) with elemental analysis of calcium and phosphorus were consistent in that they confirmed that PCL scaffolds containing 35 wt% DBM in SBF at 14 days post-immersion showed signs of early apatite formation.
机译:使用盐浸出方法制造含有25,35和50wt%的骨基质(DBM)的圆柱形多己酰胺(PCL)支架,用于在骨工程中应用。在本作工作中,在恒定旋转下,在去离子(DI)水和模拟体液(SBF)中,在去离子(DI)水和模拟体液(SBF)中监测PCL-DBM支架。在恒定旋转下,在37℃下进行5,10,15和20天的时间段。在生理条件下使用SBF的合成材料生物活性的体外评估可以用作体内支架行为的气压计。如果在支架内的DBM浓度和其表面上形成磷灰石形成之间存在相关性,则使用骨诱导材料。具有元素分析的生物化学测定,茜素红S染色和扫描电子显微镜(SEM)的钙和磷的元素分析中,它们证实,在浸渍后14天的SBF中含有35wt%DBM的PCL支架显示出早期磷灰石形成的迹象显示。

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