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首页> 外文期刊>Journal of biomedical materials research, Part A >Effects of fluoride‐modified titanium surfaces with the similar roughness on RUNX2 gene expression of osteoblast‐like MG63 cells
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Effects of fluoride‐modified titanium surfaces with the similar roughness on RUNX2 gene expression of osteoblast‐like MG63 cells

机译:氟化物改性钛表面对成骨细胞样Mg63细胞Runx2基因表达的粗糙度的影响

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Abstract Chemical modification of titanium surfaces by hydrofluoric acid (HF) is an effective method to improve bone responses on titanium implant surfaces. In this study, titanium disks were sandblasted with titanium oxide grits and modified with 0.2% and 0.4% of diluted HF under different exposure times of 40 and 60 s. Surface characteristics, such as surface chemical composition, surface topography, and surface wettability, were investigated. To examine MG63 osteoblast‐like cell responses to fluoride‐modified titanium surfaces with roughness similar to that of nonmodified surfaces, a cell proliferation assay was performed and gene expression levels of Runx2 were evaluated using real‐time PCR. Fluoride‐modified titanium surfaces revealed no significant roughness difference but with hydrophilic properties than control group SB. Moreover, the relative atomic concentration percentages of fluoride were 0.7, 1.5, and 2.8. As fluoride concentrations increased, surface wettability increased and cell proliferation began earlier. However, the gene expression levels of Runx2 increased earlier on surfaces with 1.5% fluoride, with significantly high surface skewness. There seems to be an optimal fluoride concentration percentage when gene expression levels of Runx2 were taken into consideration. In addition, surface parameters, such as surface wettability and surface skewness, seem to be important factors in the enhancement of osteoblast differentiation by HF. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 3102–3109, 2017.
机译:疏水废酸(HF)的钛表面的化学改性是改善钛植入表面上的骨响应的有效方法。在该研究中,钛盘用氧化钛砂浆喷砂,并在40和60秒的不同暴露时间下用0.2%和0.4%的稀释的HF进行修饰。研究了表面特性,如表面化学成分,表面形貌和表面润湿性。为了检查与粗糙度的氟化物改性的钛表面与粗糙度相似的Mg63成骨细胞样细胞响应,类似于非碳化表面的粗糙度,使用实时PCR评估runx2的基因表达水平。氟化物改性的钛表面显示没有显着的粗糙度差异,但具有亲水性的性质而不是对照组SB。此外,氟化物的相对原子浓度百分比为0.7,1.5和2.8。随着氟化物浓度的增加,表面润湿性增加,细胞增殖早先开始。然而,Runx2的基因表达水平在氟化物1.5%氟化物的表面上较早增加,表面偏斜显着高。考虑到RUNX2的基因表达水平时似乎存在最佳的氟化物浓度百分比。此外,表面参数,如表面润湿性和表面偏斜,似乎是通过HF增强成骨细胞分化的重要因素。还2017年Wiley期刊,Inc。J生物密制A部分:105A:3102-3109,2017。

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