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Observation of Fibroblast Cell Attachment and Proliferation on Different Titanium Surface Textures: Morphology and In Vitro Study

机译:不同钛表面纹理成纤维细胞附着和增殖的观察:形态学和体外研究

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For dental implant, Titanium abutments were statically reported failure of long-term implantation related to soft tissue defects, unpredictable esthetic outcome and bacterial leakage by positioning failure. Recently, a dominant influence of the surface modification for the soft tissue integration at the Titanium implant tissue interface has found in a lot of experimental studies. The purpose of present study is evaluation of fibroblast cell behaviors on different modified Titanium surface including Titanium (Ti) alloys, Titanium dioxide (Ti02) and Ti modified with Collagen type I (TiCol-1) at various time intervals of cell culturing. Titanium plates were treated with NaOH and Collagen type I (Col-1) deposition in 2 different patterns. Polished and sand-blasted titanium plates were used as control group. Specimen surface properties were determined using scanning electron microscopy (SEM). Fibroblast cell behavior on modified surfaces was analyzed by SEM images for cell adhesion, viability, proliferation. The results suggested that modified Ti surfaces had significant affect the viability of fibroblast cells and improved adhesion was measured in Col-1 modification groups after 1 h and 1 day. Proliferation study showed that the density of fibroblast cells after 3 days cultured on TiCol-1 was higher and comparable with that of other groups. As for cell membrane adhesion, cells grew after 5 days on Collagen modified surfaces also had higher expression as compared with titanium treated by NaOH. In conclusion, TiCol-1 surface seems to favor fibroblast adhesion.
机译:对于牙科植入物,钛支座静止报告的长期植入失效与软组织缺陷有关,通过定位失败,通过定位失效,不可预测的美容结果和细菌泄漏。最近,在钛植入组织界面处的软组织积分对表面改性的主导影响已经存在于许多实验研究中。目前研究的目的是在不同时间间隔的细胞培养的各个时间间隔中评估不同改性钛表面上的成纤维细胞细胞行为,包括用胶原蛋白I(TiCol-1)改性的二氧化钛(TiO 2)和Ti。用NaOH和胶原型I(Col-1)沉积在2种不同的图案中处理钛板。抛光和喷砂钛板用作对照组。使用扫描电子显微镜(SEM)测定样品表面性质。通过SEM图像分析改性表面上的成纤维细胞行为以进行细胞粘附,活力,增殖。结果表明,修饰的Ti表面具有显着影响成纤维细胞的活力,并在1小时和1天后在Col-1改性基团中测量改善的粘合性。增殖研究表明,在Ticol-1培养3天后成纤维细胞密度较高,与其他基团的相当。对于细胞膜粘附,细胞在5天后在胶原蛋白改性表面后越来越高,与NaOH处理的钛相比也具有更高的表达。总之,Ticol-1表面似乎有利于成纤维细胞粘附。

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