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Surface Modification of Direct-Current and Radio-Frequency Oxygen Plasma Treatments Enhance Cell Biocompatibility

机译:直流和射频氧等离子体处理的表面修饰增强了细胞的生物相容性

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摘要

The sand-blasting and acid etching (SLA) method can fabricate a rough topography for mechanical fixation and long-term stability of titanium implant, but can not achieve early bone healing. This study used two kinds of plasma treatments (Direct-Current and Radio-Frequency plasma) to modify the SLA-treated surface. The modification of plasma treatments creates respective power range and different content functional OH groups. The results show that the plasma treatments do not change the micron scale topography, and plasma-treated specimens presented super hydrophilicity. The X-ray photoelectron spectroscopy (XPS)-examined result showed that the functional OH content of the RF plasma-treated group was higher than the control (SLA) and DC treatment groups. The biological responses (protein adsorption, cell attachment, cell proliferation, and differentiation) promoted after plasma treatments, and the cell responses, have correlated to the total content of amphoteric OH groups. The experimental results indicated that plasma treatments can create functional OH groups on SLA-treated specimens, and the RF plasma-treated SLA implant thus has potential for achievement of bone healing in early stage of implantation.
机译:喷砂和酸蚀(SLA)方法可以制造粗糙的形貌,以实现钛植入物的机械固定和长期稳定性,但无法实现早期的骨愈合。这项研究使用了两种等离子体处理(直流等离子体和射频等离子体)来修饰经SLA处理的表面。等离子体处理的改进产生了各自的功率范围和不同含量的官能OH基团。结果表明,等离子体处理不会改变微米级的形貌,并且等离子体处理过的样品具有超强的亲水性。 X射线光电子能谱(XPS)检查的结果表明,RF等离子体处理组的功能性OH含量高于对照组(SLA)和DC处理组。血浆处理后促进的生物学反应(蛋白质吸附,细胞附着,细胞增殖和分化)和细胞反应与两性OH基团的总含量相关。实验结果表明,等离子体处理可以在SLA处理过的标本上产生功能性OH基团,因此RF等离子体处理过的SLA植入物具有在植入初期实现骨愈合的潜力。

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