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55S~circleR Bioglass Stimulates in Vitro osteoblast Differentiation and Creates a Favorable Template for Bone Tissue Formation

机译:55S〜Circler Bioglass刺激体外成骨细胞分化,并为骨组织形成产生有利模板

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In this study, we have investigated the behavior of fetal rat osteoblasts cultured on bioactive glasses with 55wtpercent silica content (55S) and on a bioinert glass (60S). When rat bone cells were cultured on both substrata, they formed multi-layered nodular structures by day 10 in culture. In addition, the specific actiivty of AP determined biochemically was significantly higher in 55S cultures than in the controls. SEM observations of the material surfaces after scraping-off the cell layers showed that mineralized bone nodules remained attached on 55S surfaces but not on 60S. The 55S/bone interfaces were also analyzed on transverse sections. The interfacial analysis showed a firm bone bonding to the 55S surface through an intervening apatite layer, confirmed by the X-ray mappings. All these results indicated the importance of the surface composition in supporting differentiation of osteogenic cells and the subsequent apposition of bone matrix allowing a strong bond of the bioactive materials to bone.
机译:在这项研究中,我们研究了胎儿大鼠骨细胞在生物活性玻璃上培养的行为,其中55wtpercent硅胶含量(55s)和生物渗透剂玻璃(60s)。当大鼠骨细胞在两种副族中培养时,它们在培养物中的第10天形成多层结节结构。此外,在55s培养物中测定的AP的具体表现明显高于对照组。刮擦擦除后的材料表面的SEM观察细胞层显示,矿化骨结节仍然附着在55°表面上但不在60s上。在横截面上还分析了55s /骨界面。界面分析显示通过介入磷灰石层与55S表面的坚固骨粘合,由X射线映射确认。所有这些结果表明了表面组合物在骨质发生细胞的分化中的重要性和随后的骨基质的链接,允许生物活性材料的强键对骨骼。

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