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首页> 外文期刊>Diamond and Related Materials >Hydrophobicity and non-thrombogenicity of nanoscale dual rough surface coated with fluorine-incorporated diamond-like carbon films: Biomimetic surface for blood-contacting medical devices
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Hydrophobicity and non-thrombogenicity of nanoscale dual rough surface coated with fluorine-incorporated diamond-like carbon films: Biomimetic surface for blood-contacting medical devices

机译:掺氟类金刚石碳膜的纳米级双粗糙表面的疏水性和非血栓形成性:用于血液接触医疗设备的仿生表面

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摘要

We investigated the hydrophobicity and non-thrombogenicity of a nanoscale dual rough surface coated with hydrophobic and non-thrombogenic fluorine-incorporated diamond-like carbon (F-DLC) films. We prepared Si (1 0 0) and a dual rough surface composed of coarse posts and nano-sized fine posts as substrates. DLC film was deposited on the Si substrate, and F-DLC film was deposited on Si or the dual rough surface using radio frequency plasma enhanced chemical vapor deposition method. The surface hydrophobicity of each sample was examined with water contact angle measurements and the non-thrombogenicity was evaluated through incubation with platelet-rich plasma isolated from human whole blood. The water repellency was dramatically improved on the F-DLC-coated dual rough surface compared with that on DLC-coated Si or F-DLC-coated Si, which had a water contact angle of 130.6°. There was no significant difference in the values for the platelet-covered area between DLC-coated Si and the F-DLC-coated dual rough surface. As DLC is being considered for widespread clinical use as a surface coating for medical devices owing to its non-thrombogenicity compared with other biomaterials, the F-DLC-coated dual rough surface presented in this study still has the potential for clinical use, such as temporary blood-contacting medical devices, to take advantage of its high hydrophobicity.
机译:我们研究了疏水和非血栓形成的氟结合的类金刚石碳(F-DLC)薄膜涂覆的纳米级双粗糙表面的疏水性和非血栓形成性。我们准备了Si(1 0 0)和由粗糙柱和纳米级精细柱组成的双重粗糙表面作为基材。使用射频等离子体增强化学气相沉积法在硅基板上沉积DLC膜,在硅或双重粗糙表面上沉积F-DLC膜。通过水接触角测量来检查每个样品的表面疏水性,并且通过与从人全血分离的富含血小板的血浆一起孵育来评估非血栓形成性。与具有130.6°的水接触角的DLC涂层的Si或F-DLC涂层的Si相比,F-DLC涂层的双粗糙表面的疏水性得到了显着改善。在DLC涂层的Si和F-DLC涂层的双粗糙表面之间,血小板覆盖面积的值没有显着差异。由于与其他生物材料相比,由于DLC具有非血栓形成性,因此被认为可广泛用于医疗器械的临床表面涂层,因此本研究中介绍的F-DLC涂层双粗糙表面仍具有临床应用潜力,例如临时接触血液的医疗设备,以利用其高疏水性。

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