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Highly Adherent Parylene-C Coatings With Nanostructuring for Enhanced Cell Adhesion and Growth

机译:具有纳米结构的高粘附性聚对二甲苯-C涂层,可增强细胞的附着力和生长

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摘要

Parylene-C is a frequently used polymeric thin-film coating in medical applications and is known for its excellent biocompatibility and flexible deposition process. However, its use in long-term implants is limited due to its poor adhesion to metals in liquid environments. In this paper, we present a strategy to anchor Parylene-C to medical grade titanium (Ti) by means of nanostructuring the Ti substrates surface prior to Parylene coating. We observe that, after aging in the physiological salt solution for three days, Parylene coating lose their adhesion to bare titanium surfaces. However, the Parylene films deposited on nanostructured Ti surfaces retain full adhesion, even after aging them in the same solution for ten days. In addition, we demonstrate that combining nanostructured surfaces with very thin Parylene coatings provides the additional benefit of accelerating cell proliferation. Nanostructured surfaces showed cell proliferation without the typically required oxygen plasma treatment. Combining plasma treatment and nanostructuring further improved proliferation performance over smooth Parylene surfaces.
机译:Parylene-C是医疗应用中经常使用的聚合物薄膜涂料,并以其出色的生物相容性和灵活的沉积工艺而闻名。然而,由于其在液体环境中对金属的不良粘附性,其在长期植入物中的使用受到限制。在本文中,我们提出了通过在聚对二甲苯涂层之前对Ti基材表面进行纳米结构化将聚对二甲苯C锚固到医用级钛(Ti)的策略。我们观察到,在生理盐溶液中老化三天后,聚对二甲苯涂层失去了对裸钛表面的粘附力。然而,即使在相同的溶液中老化十天后,沉积在纳米结构Ti表面上的聚对二甲苯膜仍保持完全粘合。另外,我们证明了将纳米结构表面与非常薄的聚对二甲苯涂层结合在一起可提供加速细胞增殖的其他好处。纳米结构表面显示出细胞增殖,而无需通常需要的氧等离子体处理。结合等离子体处理和纳米结构,进一步改善了聚对二甲苯表面光滑的扩散性能。

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