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Titanium Dioxide Nanowires Grown on Titanium Disks Create a Nanostructured Surface with Improved In Vitro Osteogenic Potential

机译:在钛盘上生长的二氧化钛纳米线产生纳米结构表面,具有改善的体外骨质潜力

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Current biomedical research is centered on the study of nanomaterials and their effects in biological environments. In particular, there is an increasing interest on TiO2 nanostructures for biomedical applications such as drug delivery or implant materials. In this framework, we present a Chemical Vapour Deposition process to synthesize titanium dioxide nanowires (NWs) on a commercially pure titanium substrate and we test the material in vitro as a culture substrate for murine osteoblast-like MC3T3-E1 cells. A physical-morphological, structural and optical-characterization of the inorganic samples is performed by Electron Microscopy techniques and X-ray Diffraction, showing that a mat of crystalline rutile TiO2 NWs is obtained over the commercial substrate. In vitro biological tests are performed by seeding MC3T3-E1 cells on the material and studying cell morphology, the cell-material interface and the osteoblast gene expression. These experiments show good cell adhesion to the nano-structured surface and a higher degree of early osteoblastic differentiation compared to control titanium surfaces, indicating that the present nano-structured material has good osteogenic potential for biomedical applications.
机译:目前的生物医学研究以纳米材料的研究为中心及其在生物环境中的作用。特别地,对生物医学应用的TiO2纳米结构的兴趣日益增加,例如药物递送或植入材料。在该框架中,我们提出了一种化学气相沉积方法,以在商业上纯钛基底上合成二氧化钛纳米线(NWS),并在鼠骨细胞样MC3-E1细胞中以体外测试材料。通过电子显微镜技术和X射线衍射进行无机样品的物理形态,结构和光学表征,表明在商业基质上获得结晶金红石TiO 2 NWS的垫。通过在材料上播种MC3T3-E1细胞和研究细胞形态,细胞 - 材料界面和成骨细胞基因表达来进行体外测试。与对照钛表面相比,这些实验表明对纳米结构表面的良好的细胞粘附以及较高程度的早期骨细胞分化,表明本发明的纳米结构材料具有良好的生物医学应用潜力。

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