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Effect of ultraviolet light treatment on surface hydrophilicity and human gingival fibroblast response on nanostructured titanium surfaces

机译:紫外线处理对纳米结构钛表面亲水性和人牙龈成纤维细胞反应的影响

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This study was designed to investigate the effect of nanostructured TiO 2 coatings on human gingival fibroblast and to explore the influence of ultraviolet (UV) light on surface wettability and cellular response. Ti‐6Al‐4V titanium alloy discs ( n ?=?96) were divided into three groups: a sol–gel‐derived MetAlive? (MA) coating; hydrothermal (HT) coating; and a non‐coated (NC) group. Forty‐eight titanium substrates were further treated with UV light for 15?min. The water contact angles of the substrates were measured using the sessile drop method. Human gingival fibroblasts were used to evaluate the cell adhesion strength and cell proliferation on experimental surfaces. The strength of cell adhesion against enzymatic detachment was studied after 6?hr of adhesion using gentle trypsinization for 15?min at room temperature. A fluorescence microscope was used for cell imaging (Zeiss‐stereo‐lumar‐v12), and images were analyzed for cell counting, and the percentage of detached cells were calculated. The proliferation of cultured cells up to 10?days was determined according to the cell activity using Alamar Blue?assay. The HT group had the lowest contact angle value (31.1°) followed by MetAlive? (35.3°), whereas the NC group had the highest contact angle (50.3°). After UV light treatment, all surfaces become considerably more hydrophilic. There was a significant difference in the amount of adherent cells between sol–gel and HT groups when compared with the NC group ( p ??.05) with detachment percentages of 35.8%, 36.4%, and 70.7%, respectively. All substrate types showed an increase in cell proliferation rate until 10?days. It can be concluded that nanostructured titanium oxide implant surfaces, obtained by sol–gel and HT coating methods, enhance the surface wettability and improve human gingival fibroblast function in terms of adhesion and proliferation rate when compared with non‐coated surfaces. UV light treatment clearly enhances the wettability of all titanium surfaces.
机译:这项研究旨在研究纳米结构的TiO 2涂层对人牙龈成纤维细胞的影响,并探讨紫外线(UV)对表面润湿性和细胞反应的影响。 Ti-6Al-4V钛合金圆盘(n == 96)分为三组:溶胶-凝胶衍生的MetAlive? (MA)涂层;水热(HT)涂层;和非涂层(NC)组。将48个钛基板进一步用紫外线照射15分钟。使用无滴法测量基材的水接触角。人类牙龈成纤维细胞用于评估实验表面的细胞粘附强度和细胞增殖。在室温下轻轻地胰蛋白酶消化15分钟后,粘附6小时后,研究了细胞粘附对酶促分离的强度。荧光显微镜用于细胞成像(Zeiss-stereo-lumar-v12),并分析图像以进行细胞计数,并计算脱离细胞的百分比。使用Alamar Blue?测定法根据细胞活性确定培养细胞的增殖长达10天。 HT组的接触角最低(31.1°),其次是MetAlive? (35.3°),而NC组的接触角最高(50.3°)。经过紫外线处理后,所有表面都变得更加亲水。与NC组相比,溶胶-凝胶和HT组之间的贴壁细胞数量有显着差异(p 0.05),其脱落百分比分别为35.8%,36.4%和70.7%。直到10天,所有底物类型均显示出细胞增殖速率的增加。可以得出结论,与非涂层表面相比,通过溶胶-凝胶和HT涂层方法获得的纳米结构的二氧化钛植入物表面在粘附力和扩散率方面提高了表面润湿性并改善了人类牙龈成纤维细胞的功能。紫外线处理明显增强了所有钛表面的润湿性。

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