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首页> 外文期刊>Journal of Tissue Engineering >Enhanced in vitro osteoblast differentiation on TiO2 scaffold coated with alginate hydrogel containing simvastatin
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Enhanced in vitro osteoblast differentiation on TiO2 scaffold coated with alginate hydrogel containing simvastatin

机译:含辛伐他汀的藻酸盐水凝胶包覆的TiO2支架上增强的体外成骨细胞分化

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The aim of this study was to develop a three-dimensional porous bone graft material as vehicle for simvastatin delivery and to investigate its effect on primary human osteoblasts from three donors. Highly porous titanium dioxide (TiO2) scaffolds were submerged into simvastatin containing alginate solution. Microstructure of scaffolds, visualized by scanning electron microscopy and micro-computed tomography, revealed an evenly distributed alginate layer covering the surface of TiO2 scaffold struts. Progressive and sustained simvastatin release was observed for up to 19 days. No cytotoxic effects on osteoblasts were observed by scaffolds with simvastatin when compared to scaffolds without simvastatin. Expression of osteoblast markers (collagen type I alpha 1, alkaline phosphatase, bone morphogenetic protein 2, osteoprotegerin, vascular endothelial growth factor A and osteocalcin) was quantified using real-time reverse transcriptase–polymerase chain reaction. Secretion of osteoprotegerin, vascular endothelial growth factor A and osteocalcin was analysed by multiplex immunoassay (Luminex). The relative expression and secretion of osteocalcin was significantly increased by cells cultured on scaffolds with 10 μM simvastatin when compared to scaffolds without simvastatin after 21 days. In addition, secretion of vascular endothelial growth factor A was significantly enhanced from cells cultured on scaffolds with both 10 nM and 10 μM simvastatin when compared to scaffolds without simvastatin at day 21. In conclusion, the results indicate that simvastatin-coated TiO2 scaffolds can support a sustained release of simvastatin and induce osteoblast differentiation. The combination of the physical properties of TiO2 scaffolds with the osteogenic effect of simvastatin may represent a new strategy for bone regeneration in defects where immediate load is wanted or unavailable.
机译:这项研究的目的是开发一种三维多孔骨移植材料作为辛伐他汀递送的载体,并研究其对来自三个供体的原代人成骨细胞的作用。将高度多孔的二氧化钛(TiO2)支架浸入含辛伐他汀的藻酸盐溶液中。支架的微观结构,通过扫描电子显微镜和显微计算机断层扫描显像,显示出覆盖TiO 2支架支杆表面的均匀分布的藻酸盐层。观察到辛伐他汀逐渐释放和持续释放长达19天。与不含辛伐他汀的支架相比,含辛伐他汀的支架未观察到对成骨细胞的细胞毒性作用。使用实时逆转录酶-聚合酶链反应对成骨细胞标志物(Ⅰ型胶原蛋白α1,碱性磷酸酶,骨形态发生蛋白2,骨保护素,血管内皮生长因子A和骨钙蛋白)的表达进行定量。通过多重免疫分析(Luminex)分析了骨保护素,血管内皮生长因子A和骨钙素的分泌。与没有辛伐他汀的支架相比,在21天后与10μM辛伐他汀的支架培养的细胞相比,骨钙素的相对表达和分泌显着增加。此外,与在第21天时未使用辛伐他汀的支架相比,在同时使用10 nM和10μM辛伐他汀的支架上培养的细胞培养的血管内皮生长因子A的分泌显着增强。总之,结果表明,辛伐他汀涂层的TiO2支架可以支持辛伐他汀的持续释放并诱导成骨细胞分化。 TiO2支架的物理性质与辛伐他汀的成骨作用的结合可能代表了需要或无法获得即时负荷的缺损中骨再生的新策略。

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