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Effect of surface topography on hydrophobicity and bacterial adhesion of polystyrene

机译:表面形貌对聚苯乙烯疏水性和细菌粘附的影响

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We report the investigation on effect of surface topography (roughness) and hydrophobicity (contact angle measurement) on bacteria adhesion for polystyrene material. The surfaces of polystyrene substrates were patterned using UV-laser radiation with a wavelength of 193 nm at different conditions. Different surface topographies were fabricated and then measured by an optical surface profiler and contact angle measurements. For bacterial adhesion experiments, an assay of Escherichia coli (E.coli) has been developed and used for bacterial adhesion measurements on both as received and the modified polystyrene surfaces. The method is based upon the staining of attached bacterial cells with the nucleic acid-binding, green fluorescent DAPI stain. The preliminary results show that laser-assisted modification by using laser ablation can make polystyrene substrates either more hydrophilic (with oxygen) or more hydrophobic (with air). The contact angle can be varied from 37° to 108°. The results on bacterial attachment show that the polystyrene substrates as received have no bacteria attached, indicating a good anti-bacterial performance. The treated substrates show some bacterial attachment and, in particular, the surfaces with high contact angle have much higher numbers of bacterial cells attached. This indicates that such laser-assisted process with air can make polystyrene surfaces more attractive to E. coli bacteria.
机译:我们报告了表面形貌(粗糙度)和疏水性(接触角测量)对聚苯乙烯材料粘附性的影响的调查。使用紫外线激光辐射在不同条件下使用紫外激光辐射进行图案化聚苯乙烯基材的表面。制造不同的表面地形,然后通过光学表面分析器和接触角测量来测量。对于细菌粘合实验,已经开发了大肠杆菌(大肠杆菌)的测定,并用于接受的细菌粘合测量和改性的聚苯乙烯表面。该方法基于附着细菌细胞的染色与核酸结合,绿色荧光DAPI染色。初步结果表明,通过使用激光消融的激光辅助改性可以使聚苯乙烯基材更亲水(用氧气)或更多的疏水性(有空气)。接触角可以从37°变化到108°。细菌附着的结果表明,接收的聚苯乙烯基材没有附着细菌,表明良好的抗细菌性能。经处理的底物显示出一些细菌附着,特别是具有高接触角的表面具有更高数量的附着细菌细胞。这表明具有空气的这种激光辅助方法可以使聚苯乙烯表面更吸引大肠杆菌细菌。

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