基于Parylene F涂层的防粘连抗菌平台

ty10086 提交于 周三, 08/25/2021 - 16:36
文章英文标题
An antiadhesion and antibacterial platform based on parylene F coatings
正文
Parylene作为一种优良的阻隔材料,在许多领域得到了广泛的应用。但是,常规的聚对苯不能忍受医疗灭菌程序,包括高温灭菌和紫外线消毒,限制了其医疗应用。一种新型的Parylene成员Parylene F克服了上述缺点,在医学应用中显示出潜力。本工作通过化学气相沉积( CVD )方法在两种聚二甲基硅氧烷( PDMS )衬底上沉积了Parylene F (型AF4 ),制备的Parylene F的厚度分别为1μm ( PDMS-PF-1 )和5μm ( PDMS-PF-5 )。我们首次考察了Parylene F的防污性能和生物相容性,发现了一个有趣的现象,即parylene F表现出了双重作用的防污活性——抗黏附和抗菌。对于革兰氏阴性菌大肠杆菌,PDMS-PF-1 ( 0.69±0.25 % )和PDMS-PF-5 ( 0.5±0.1 % )的污垢面积占总面积的比例明显低于原始PDMS ( 6±0.77 % )。PDMS-PF-1 ( 45.49 ± 9.58 % )和PDMS - PF - 5 ( 45.3 ± 8.8 % )的抗菌率(死/总菌)均高于原始PDMS ( 28.12 ± 3.26 % )。对革兰氏阳性菌枯草芽孢杆菌的试验也观察到类似的结果。抗黏附和抗菌特性的协同作用赋予了表面优异的防污性能。这些结果表明,Parylene F的厚度与其抗粘连性能有密切关系,而不影响抗菌活性。此外,本研究还发现Parylene F具有良好的透光性( PDMS-PF-1 )
文章内容(英文)
As an excellent barrier material, parylene has been widely used in plenty of fields. However, conventional parylenes cannot endure medical sterilization procedures, including high-temperature sterilization and ultraviolet disinfection, which restrict their medical applications. A new parylene member, Parylene F, overcomes the above drawbacks and shows potential in medical applications. In this work, parylene F (type AF4) was deposited on two polydimethylsiloxane (PDMS) substrates through chemical vapor deposition (CVD) method, and the thickness of parylene F was 1 μm (PDMS-PF-1) and 5 μm (PDMS-PF-5), respectively. For the first time, we investigated the antifouling property and biocompatibility of parylene F. We found an interesting phenomenon that parylene F demonstrated dual-action antifouling activities—antiadhesion and antibacterial. For gram-negative bacteria Escherichia coli, the fouled area to the total area ratios on PDMS-PF-1 (0.69 ± 0.25 %) and PDMS-PF-5 (0.5 ± 0.1 %) were significantly lower than that on the pristine PDMS (6 ± 0.77 %). The antibacterial ratios (dead/total bacteria) of PDMS-PF-1 (45.49 ± 9.58 %) and PDMS-PF-5 (45.3 ± 8.8 %) were higher than that of the pristine PDMS (28.12 ± 3.26 %). Similar results were also observed in the tests against gram-positive bacteria Bacillus subtilis. The synergistic effect of antiadhesion and antibacterial characteristics endowed the surface with excellent antifouling properties. These results indicated that the thickness of parylene F had a close relationship to its antiadhesion performance, while not affecting the antibacterial activity. Additionally, this study revealed that parylene F exhibited good light transmittance (PDMS-PF-1 \u0026gt; 83 % and PDMS-PF-5 \u0026gt; 81 % in the visible wavelength) and excellent biocompatibility (relative cell viability \u0026gt; 86 %). These excellent properties mean that parylene F can act as a potential candidate for medical and related applications.
来源出处
Journal|[J]Progress in Organic Coatings2020. PP 106021-
DOI
https://doi.org/10.1016/J.PORGCOAT.2020.106021

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