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聚氨酯上的柔性樟脑类金刚石碳涂层可防止白色念珠菌生物膜生长。

Flexible camphor diamond-like carbon coating on polyurethane to prevent Candida albicans biofilm growth.

作者信息

Santos Thaisa B, Vieira Angela A, Paula Luciana O, Santos Everton D, Radi Polyana A, Khouri Sônia, Maciel Homero S, Pessoa Rodrigo S, Vieira Lucia

机构信息

Universidade do Vale do Paraíba - UNIVAP, Grupo Nanotecplasma, Av. Shishima Hifumi, 2911 - Urbanova, CEP 12.244-000 São José dos Campos, SP, Brazil.

Universidade do Vale do Paraíba - UNIVAP, Grupo Nanotecplasma, Av. Shishima Hifumi, 2911 - Urbanova, CEP 12.244-000 São José dos Campos, SP, Brazil; Instituto Tecnológico de Aeronáutica - ITA, Laboratório de Processamento a Plasma, Praça Marechal Eduardo Gomes, 50 - Vila das Acácias, São José dos Campos, SP 12228-900, Brazil.

出版信息

J Mech Behav Biomed Mater. 2017 Apr;68:239-246. doi: 10.1016/j.jmbbm.2017.02.013. Epub 2017 Feb 16.

Abstract

Camphor was incorporated in diamond-like carbon (DLC) films to prevent the Candida albicans yeasts fouling on polyurethane substrates, which is a material commonly used for catheter manufacturing. The camphor:DLC and DLC film for this investigation was produced by plasma enhanced chemical vapor deposition (PECVD), using an apparatus based on the flash evaporation of organic liquid (hexane) containing diluted camphor for camphor:DLC and hexane/methane, mixture for DLC films. The film was deposited at a low temperature of less than 25°C. We obtained very adherent camphor:DLC and DLC films that accompanied the substrate flexibility without delamination. The adherence of camphor:DLC and DLC films on polyurethane segments were evaluated by scratching test and bending polyurethane segments at 180°. The polyurethane samples, with and without camphor:DLC and DLC films were characterized by Raman spectroscopy, scanning electron microscopy, atomic force microscopy, and optical profilometry. Candida albicans biofilm formation on polyurethane, with and without camphor:DLC and DLC, was assessed. The camphor:DLC and DLC films reduced the biofilm growth by 99.0% and 91.0% of Candida albicans, respectively, compared to bare polyurethane. These results open the doors to studies of functionalized DLC coatings with biofilm inhibition properties used in the production of catheters or other biomedical applications.

摘要

樟脑被掺入类金刚石碳(DLC)薄膜中,以防止白色念珠菌在聚氨酯基材上形成污垢,聚氨酯是一种常用于制造导管的材料。本研究中用于制备含樟脑的DLC(樟脑:DLC)和DLC薄膜的方法是等离子体增强化学气相沉积(PECVD),使用一种基于对含有稀释樟脑的有机液体(己烷)进行闪蒸的设备来制备樟脑:DLC,使用己烷/甲烷混合物来制备DLC薄膜。薄膜在低于25°C的低温下沉积。我们获得了附着力很强的樟脑:DLC和DLC薄膜,这些薄膜具有基材柔韧性且不会分层。通过划痕试验和将聚氨酯段弯曲180°来评估樟脑:DLC和DLC薄膜在聚氨酯段上的附着力。对带有和不带有樟脑:DLC和DLC薄膜的聚氨酯样品进行拉曼光谱、扫描电子显微镜、原子力显微镜和光学轮廓测量表征。评估了在带有和不带有樟脑:DLC和DLC的聚氨酯上白色念珠菌生物膜的形成情况。与裸露的聚氨酯相比,樟脑:DLC和DLC薄膜分别使白色念珠菌的生物膜生长减少了99.0%和91.0%。这些结果为研究用于导管生产或其他生物医学应用的具有生物膜抑制特性的功能化DLC涂层打开了大门。

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