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A Chemical Stability Study of Trimethylsilane Plasma Nanocoatings for Coronary Stents

机译:三甲基硅烷等离子体纳米涂层用于冠状动脉支架的化学稳定性研究

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摘要

In this study, trimethylsilane (TMS) plasma nanocoatings were deposited onto 316L stainless steel coupons in direct current (DC) and radio frequency (RF) glow discharges and additional NH3/O2 plasma treatment to tailor the coating surface properties. The chemical stability of the plasma nanocoatings were evaluated after 12 week (~3 month) storage under dry condition (25 °C) and immersion in simulated body fluid (SBF) at 37 °C. It was found that nanocoatings did not impact surface roughness of underlying stainless steel substrates. X-ray photoelectron spectroscopy (XPS) and Fourier transform infrared spectroscopy (FTIR) were used to characterize surface chemistry and compositions. Both DC and RF TMS plasma nanocoatings had Si– and C– rich composition; and the O– and N– contents on the surfaces were substantially increased after NH3/O2 plasma treatment. Contact angle measurements showed that DC TMS nanocoating with NH3/O2 treatment generated very hydrophilic surfaces. DC TMS nanocoatings with NH3/O2 treatment showed minimal surface chemistry change after 12 week immersion in SBF. However, nitrogen functionalities on RF-TMS coating with NH3/O2 post treatment were not as stable as in DC case. Cell culture studies revealed that the surfaces with DC coating and NH3/O2 post treatment demonstrated substantially improved proliferation of endothelial cells over the 12 week storage period at both dry and wet conditions, as compared to other coated surfaces. Therefore, DC nanocoatings with NH3/O2 post treatment may be chemically stable for long-term properties, including shelf-life storage and exposure to the bloodstream for coronary stent applications.
机译:在这项研究中,将三甲基硅烷(TMS)等离子纳米涂层通过直流(DC)和射频(RF)辉光放电以及额外的NH3 / O2等离子处理沉积到316L不锈钢试样上,以调整涂层的表面性能。在干燥条件(25°C)下储存12周(〜3个月)并浸入37°C的模拟体液(SBF)中后,评估了等离子体纳米涂层的化学稳定性。发现纳米涂层不影响下面的不锈钢基底的表面粗糙度。 X射线光电子能谱(XPS)和傅里叶变换红外光谱(FTIR)用于表征表面化学和组成。 DC和RF TMS等离子纳米涂层都具有富含Si和C的成分; NH3 / O2等离子体处理后,表面的O和N含量大大增加。接触角测量结果表明,采用NH3 / O2处理的DC TMS纳米涂层产生了非常亲水的表面。 NH3 / O2处理的DC TMS纳米涂层在SBF中浸泡12周后,表面化学变化最小。但是,用NH3 / O2进行后处理的RF-TMS涂层的氮功能不如DC情况下稳定。细胞培养研究表明,与其他涂层表面相比,具有DC涂层和NH3 / O2后处理的表面在干燥和潮湿条件下的12周存储期内均显示内皮细胞的增殖显着改善。因此,具有NH3 / O2后处理的DC纳米涂层在化学上具有长期稳定性,包括长期保存和暴露于冠状动脉支架应用的血流中。

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