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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >A comparative study of fine polished stainless steel, TiN and TiN/Ag surfaces: Adhesion and attachment strength of Listeria monocytogenes as well as anti-listerial effect
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A comparative study of fine polished stainless steel, TiN and TiN/Ag surfaces: Adhesion and attachment strength of Listeria monocytogenes as well as anti-listerial effect

机译:精细抛光不锈钢,锡和锡/ AG表面的比较研究:李斯特菌单核细胞增生的粘附和附着强度及抗洞室效应

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Magnetron sputtering was used to produce nanocomposite TiN and TiN/Ag coatings on stainless steel surfaces. The surface chemistry (EDX), physicochemical properties (contact angles), topography and roughness parameters (WLP and AFM) of the fine polished stainless steel (FPSS), TiN and TiN/8.6. at.% Ag surfaces were examined. Real-time initial adhesion of two Listeria monocytogenes strains (EGDe and 64) to the three surfaces was determined under flow conditions, and their attachment strength after adhesion was measured using atomic force microscopy (AFM). The anti-listerial properties of the surfaces were determined using LIVE/DEAD staining.Our results demonstrate that FPSS, TiN and TiN/8.6. at.% Ag possessed different surface properties, which may influence both attachment strength and anti-listerial properties. There were no significant (p> 0.05) differences in the initial adhesion of the two L. monocytogenes strains to the three different surfaces. Attachment studies showed that the two L. monocytogenes strains did not attach to FPSS under wetted conditions. However, both strains attached to TiN and TiN/8.6. at.% Ag surfaces, although with less strength to TiN/8.6. at.% Ag than to TiN surfaces. The TiN/8.6. at.% Ag surface showed marked anti-listerial properties as compared with FPSS and TiN. Initial adhesion, attachment strength and anti-listerial properties were found to be strain dependent.
机译:磁控溅射用于在不锈钢表面上生产纳米复合锡和锡/ AG涂层。精细抛光不锈钢(FPSS),锡和锡/ 8.6的表面化学(EDX),物理化学性质(接触角),地形和粗糙度参数(WLP和AFM)。在。检查%AG表面。在流动条件下测定两种李斯特菌单核细胞增生菌株(EGDE和64)的实时初始粘附,并使用原子力显微镜(AFM)测量粘合后的附着强度。使用活/染色测定表面的抗Listerial特性。结果表明FPS,锡和锡/ 8.6。在。%AG具有不同的表面性质,这可能影响附着强度和抗洞穴性质。两种单核细胞增粒菌株到三种不同表面的初始粘附性没有显着的(p> 0.05)差异。附着研究表明,两种单核细胞元菌株在湿润条件下没有附着于FPS。然而,两种菌株附着在锡和锡/ 8.6上。在。%AG表面,虽然锡/ 8.6的强度较小。在。%AG比TIN表面。锡/ 8.6。与FPS和锡相比,%Ag表面显示出明显的抗洞室性质。发现初始粘附,附着强度和抗脑卒中特性是依赖于应变的。

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