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首页> 外文期刊>Key Engineering Materials >Gene-expression of MC3T3-E1 Osteoblast Cells Cultured on Anodized Titanium Surface and Machined Titanium Surface by using cDNA Microarray
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Gene-expression of MC3T3-E1 Osteoblast Cells Cultured on Anodized Titanium Surface and Machined Titanium Surface by using cDNA Microarray

机译:利用cDNA微阵列在阳极氧化钛表面和机加工钛表面上培养的MC3T3-E1成骨细胞的基因表达

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摘要

One of the techniques for modifying Ti implant surface is an anodization. This method is an electrochemical one that forms rough, thick, and porous oxide films. To compare the gene expression from the cells cultured on the different implant surface, cDNA microarray have been performed. MC3T3-E1 cells were cultured on titanium disks. The control groups were cultured on the machined surfaces(MS). The experimental groups cultured on the anodized titanium surfaces(AS). Microarray assay 48 hours after culturing the cells on the machined surface and anodized surface revealed that osteoinductive molecules appeared more prominent on the anodized surface, whereas the adhesion molecules on the biomaterial were higher on the machined surface than anodized surface, which will affect the phenotype of the plated cells depending on the surface morphology.
机译:修饰钛植入物表面的技术之一是阳极氧化。该方法是一种电化学方法,可形成粗糙,厚实和多孔的氧化膜。为了比较来自在不同植入物表面上培养的细胞的基因表达,已经进行了cDNA微阵列。 MC3T3-E1细胞培养在钛盘上。对照组在机加工表面(MS)上培养。实验组在阳极氧化的钛表面(AS)上培养。在加工的表面和阳极氧化的表面上培养细胞48小时后进行微阵列分析,结果表明,在阳极氧化的表面上骨诱导分子显得更加突出,而在机械加工的表面上,生物材料上的粘附分子要比阳极化的表面更高,这会影响表皮的表型。电镀的细胞取决于表面形态。

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