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Multiple linear regression analysis of bacterial deposition to polyurethane coatings after conditioning film formation in the marine environment

机译:在海洋环境中调节膜形成后聚氨酯涂层细菌沉积的多元线性回归分析

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摘要

Many studies have shown relationships of substratum hydrophobicity, charge or roughness with bacterial adhesion, although bacterial adhesion is governed by interplay of different physico-chemical properties and multiple regression analysis would be more suitable to reveal mechanisms of bacterial adhesion. The formation of a conditioning film of organic compounds adsorbed from seawater affects the properties of substratum surfaces prior to bacterial adhesion, which is a complicating factor in studying the mechanism of bacterial adhesion. In this paper, the impact of conditioning films adsorbed from natural seawater to four polyurethane coatings with different hydrophobicity, elasticity and roughness was studied for three different marine bacterial strains in a multiple linear regression analysis. The water contact angle on hydrophobic coatings decreased on average by 8 degrees and increased on average by the same amount on hydrophilic coatings. These changes were accompanied by increased concentrations of oxygen and nitrogen on the surface as determined by X-ray photoelectron spectroscopy, indicative of adsorption of proteinaceous material. Furthermore, the mean surface roughness increased on average by 4?nm after conditioning film formation. Multiple linear regression analysis revealed that changes in deposition due to conditioning film formation of Marinobacter hydrocarbonoclasticus, Psychrobacter sp. SW5H and Halomonas pacifica in a stagnation-point flow chamber could be explained in a model comprising hydrophobicity and the prevalence of nitrogen-rich components on the surface for the most hydrophobic strain. For the two more hydrophilic strains, deposition was governed by a combination of surface roughness and hydrophobicity. Elasticity was not a factor in bacterial adhesion to conditioning films.
机译:许多研究表明了脱疏疏水性,充电或粗糙度与细菌粘附的关系,尽管细菌粘附通过不同的物理化学性质的相互作用来控制,并且多元回归分析更适合揭示细菌粘附机制。从海水中吸附的有机化合物的形成膜的形成会影响细菌粘附之前的底表面的性质,这是研究细菌粘附机理的复杂因素。本文在多元线性回归分析中研究了三种不同海洋细菌菌株的三种不同海洋细菌菌株中吸附到自然海水中的调节膜的影响。疏水涂层上的水接触角平均降低8度,平均在亲水涂层上平均增加。这些变化伴随着由X射线光电子光谱法测定的表面上的氧气和氮的浓度增加,指示蛋白质材料的吸附。此外,在调理成膜后平均平均表面粗糙度平均增加4μm。多元线性回归分析显示,由于调节嗜酸性嗜酸性嗜睡剂的调节成膜导致的沉积变化,精神病杆菌SP。 SW5H和Halomonas Pacifica在停滞点流动室中可以在包含疏水性和富含氮成分的模型中解释用于最疏水的菌株的含氮成分的含水量。对于更多的亲水菌株,沉积通过表面粗糙度和疏水性的组合来控制。弹性不是对调理膜的细菌粘附的因素。

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