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首页> 外文期刊>Scientific reports. >The Effects of Non-Thermal Atmospheric Pressure Plasma treated Titanium Surface on Behaviors of Oral Soft Tissue Cells
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The Effects of Non-Thermal Atmospheric Pressure Plasma treated Titanium Surface on Behaviors of Oral Soft Tissue Cells

机译:非热大气压等离子体处理钛表面对口腔软组织细胞行为的影响

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Here, we investigated the possible use of the technology known as non-thermal atmospheric pressure plasma on integration and control of cytokine release of soft tissue on titanium surface. After NTAPP was applied to titanium samples, changes of surface characteristics were measured as topographical features, contact angle, surface tension, and with X-ray photoelectron spectroscopy (XPS). Protein absorption was evaluated using a bovine serum albumin absorption assay. The attachment, viability, morphology, proliferation, and cytokine release of soft tissue on titanium were assessed. No change in topographical features was observed between control and NTAPP-treated groups. However, NTAPP treatment resulted in significant lowering of the contact angle for polar and non-polar liquids and increase of surface tension. Protein absorption was significantly enhanced on the NTAPP-treated samples. Normal soft tissue attachment was improved on the NTAPP-treated groups with good viability. Cellular morphology was improved in NTAPP-treated groups whereas cellular proliferation was not enhanced. There was a significant reduction in the amounts of cytokine release for inflamed IHOK and hTERT-hNOF on the NTAPP-treated groups; except for IL-8 for IHOKs. This study demonstrates that surface functional consequences by NTAPP exposure enhanced behavior of oral soft tissue cells without topographical change.
机译:在这里,我们研究了称为非热大气压等离子体的技术的可能使用,用于钛表面上软组织的细胞因子释放的整合和控制。在将NtApp应用于钛样品之后,将表面特性的变化作为地形特征,接触角,表面张力和X射线光电子能谱(XPS)进行了变化。使用牛血清白蛋白吸收测定评估蛋白质吸收。评估钛上软组织的附着,活力,形态,增殖和细胞因子释放。在控制和NTAPP治疗组之间没有观察到地形特征的变化。然而,NTAPP处理导致极性和非极性液体的接触角显着降低以及表面张力的增加。在NTAPP处理的样品上显着提高了蛋白质吸收。在具有良好活力的NTAPP处理基团上改善了正常软组织附着。在NtApp处理的基团中改善了细胞形态,而细胞增殖未得到增强。在NtApp治疗组上发炎的Ihok和HTERT-HNOF的细胞因子释放量显着降低;除了Ihoks的IL-8。本研究表明,NTAPP暴露的表面功能后果,不会在没有地形变化的情况下进行口腔软组织细胞的增强行为。

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