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首页> 外文期刊>Journal of biomedical materials research, Part A >Fabrication of electrospun silica-titania nanofibers with different silica content and evaluation of the morphology and osteoinductive properties
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Fabrication of electrospun silica-titania nanofibers with different silica content and evaluation of the morphology and osteoinductive properties

机译:不同二氧化硅含量的电纺二氧化硅-二氧化钛纳米纤维的制备及形貌和骨诱导性能的评价

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Ceramic-derived materials have shown enhanced osteogenic potential for bone tissue engineering applications. Silica is the major component of bioglass, and titania, the oxide complex of titanium, has been found to enhance osteoblast differentiation. In this study, three groups of sol-gelderived silica-titania fibrous meshes with precursor ratios of Ti:Si = 7:3, 1:1, 3:7 were fabricated by electrospinning. The effects of silica content on the crystal phase and morphology of silica-titania hybrid nanofiber meshes were also analyzed by scanning electron microscopy, X-ray diffraction, and laser confocal microscopy. The osteogenic potential of the silica-titania meshes was evaluated by seeding mesenchymal stem cells (MSCs) on each mesh and determining cell number, osteodifferentiation markers, and osteopontin production over time. Our results show that cells proliferated throughout the mesh surfaces with similar morphology in all groups. Decreased cell proliferation was observed with the fiber meshes compared with glass controls, whereas cell differentiation toward osteoblast was enhanced on the mesh groups, especially on the Ti:Si = 7:3 group. These findings suggest that higher fiber diameter, degree of crystallization, and titania content of nanofibers can enhance osteodifferentiation of MSCs.
机译:陶瓷衍生的材料在骨组织工程应用中显示出增强的成骨潜力。二氧化硅是生物玻璃的主要成分,二氧化钛是钛的氧化物配合物,已发现可增强成骨细胞的分化。在这项研究中,通过电纺丝制备了三组溶胶-凝胶化的二氧化硅-二氧化钛纤维网,其前体比率为Ti:Si = 7:3、1:1、3:7。还通过扫描电子显微镜,X射线衍射和激光共聚焦显微镜分析了二氧化硅含量对二氧化硅-二氧化钛杂化纳米纤维网的晶相和形态的影响。通过在每个网格上植入间充质干细胞(MSC)并确定细胞数,骨分化标记和骨桥蛋白随时间的推移,来评估二氧化硅-二氧化钛网格的成骨潜力。我们的结果表明,所有组中的细胞均以相似的形态在整个网状表面上增殖。与玻璃对照组相比,纤维网观察到细胞增殖减少,而网状组,尤其是Ti:Si = 7:3组,向成骨细胞的细胞分化增强。这些发现表明,更高的纤维直径,结晶度和纳米纤维的二氧化钛含量可以增强MSC的骨分化。

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