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Radio-Frequency Plasma-Induced Biocompatibility of Polyimide Substrates

机译:聚酰亚胺基材的射频等离子体诱导的生物相容性

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摘要

Surfaces of polyimide (PI) sheets were modified using 13.56-MHz radio-frequency discharges to enhance their affinity with fibroblast cells. Physico-chemical analysis of pristine and plasma-treated PI sheets showed different responses against argon (Ar), oxygen (O.,), and nitrogen (N2) as the plasma process gases. Overall, hydrophilicity of treated PI surfaces was enhanced, and its surface free energy increased from 53 dyn/cm to at least 73 dyn/ cm. Surface roughness values also increased from 1.3 to 40.8 nm, as demonstrated by atomic force microscopy analyses. Infrared spectral analyses showed a decrease of imide functional group peak intensities on plasma exposure, corresponding to chemical surface structural changes. In addition, plasma-treated surfaces significantly increased cell adhesion and proliferation compared to pristine samples. N2-containing plasma exhibited the greatest increase among the test gases, due to the possible inclusion of N2-based functional groups that enhance biochemical affinity of fibroblast cells.
机译:使用13.56-MHz射频放电进行修饰聚酰亚胺(PI)片材的表面,以增强其与成纤维细胞的亲和力。原始和等离子体处理的PI片材的物理化学分析显示出对氩气(Ar),氧(O.)和氮(N2)的不同反应作为等离子体工艺气体。总的来说,增强了处理的PI表面的亲水性,其表面自由能量从53·达克/厘米增加到至少73·达克/厘米。表面粗糙度值也从1.3〜40.8nm增加,如原子力显微镜分析所证明的。红外光谱分析显示亚胺官能团峰值强度降低等离子体曝光,对应于化学表面结构变化。另外,与原始样品相比,血浆处理的表面显着提高了细胞粘附和增殖。由于可能包含增强成纤维细胞的生物化学亲和力,含N 2的血浆呈现最大的试验气体中最大的增加。

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