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Surface Treatment of PEOT/PBT (55/45) with a Dielectric Barrier Discharge in Air Helium Argon and Nitrogen at Medium Pressure

机译:在中等压力下在空气氦气氩气和氮气中通过介电阻挡放电对PEOT / PBT(55/45)进行表面处理

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摘要

This work describes the surface modification of 300PEO-PEOT/PBT 55/45 thin films using a medium pressure dielectric barrier discharge system operated in argon, helium, nitrogen or dry air to improve cell-surface interactions of this established biomaterial. The first part of the paper describes the optimization of the plasma processing parameters using water contact angle goniometry. The optimized samples are then characterized for changes in surface topography and surface chemical composition using atomic force microscopy (AFM) and X-ray fluorescence spectroscopy (XPS) respectively. For all plasma treatments, a pronounced increase in surface wettability was observed, of which the extent is dependent on the used plasma discharge gas. Except for dry air, only minor changes in surface topography were noted, while XPS confirmed that the changes in wettability were mainly chemical in nature with the incorporation of 5–10% of extra oxygen as a variety of polar groups. Similarly, for the nitrogen plasma, 3.8% of nitrogen polar groups were additionally incorporated. Human foreskin fibroblast (HFF) in vitro analysis showed that within the first 24 h after cell seeding, the effects on cell-surface interactivity were highly dependent on the used discharge gas, nitrogen plasma treatment being the most efficient. Differences between untreated and plasma-treated samples were less pronounced compared to other biodegradable materials, but a positive influence on cell adhesion and proliferation was still observed.
机译:这项工作描述了使用在氩气,氦气,氮气或干燥空气中运行的中压介质阻挡放电系统对300PEO-PEOT / PBT 55/45薄膜进行的表面改性,以改善这种既定生物材料的细胞表面相互作用。本文的第一部分描述了使用水接触角测角法优化等离子体处理参数的方法。然后分别使用原子力显微镜(AFM)和X射线荧光光谱(XPS)对优化的样品的表面形貌和表面化学成分进行表征。对于所有等离子体处理,均观察到表面润湿性的显着提高,其程度取决于所用的等离子体放电气体。除干燥空气外,仅注意到表面形貌的微小变化,而XPS证实,润湿性的变化主要是化学性质,并结合了5-10%的额外氧作为各种极性基团。类似地,对于氮等离子体,另外引入3.8%的氮极性基团。人包皮成纤维细胞(HFF)的体外分析表明,在细胞接种后的最初24小时内,对细胞表面相互作用的影响高度依赖于所用的放电气体,其中氮等离子体处理最为有效。与其他可生物降解材料相比,未经处理和经血浆处理的样品之间的差异不太明显,但仍观察到对细胞粘附和增殖的积极影响。

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