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首页> 外文期刊>Journal of Colloid and Interface Science >Force measurements of bacterial adhesion on metals using a cell probe atomic force microscope
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Force measurements of bacterial adhesion on metals using a cell probe atomic force microscope

机译:使用细胞探针原子力显微镜对细菌粘附在金属上的力进行测量

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The adhesion of microbial cells to metal surfaces in aqueous media is an important phenomenon in both the natural environment and engineering systems. The adhesion of two anaerobic sulfate-reducing bacteria (Desulfovibrio desulfuricans and a local marine isolate) and an aerobe (Pseudomonas sp.) to four polished metal surfaces (i.e., stainless steel 316, mild steel, aluminum, and copper) was examined using a force spectroscopy technique with an atomic force microscope (AFM). Using a modified bacterial tip, the attraction and repulsion forces (in the nano-Newton range) between the bacterial cell and the metal surface in aqueous media were quantified. Results show that the bacterial adhesion force to aluminum is the highest among the metals investigated, whereas the one to copper is the lowest. The bacterial adhesion forces to metals are influenced by both the electrostatic force and metal surface hydrophobicity. It is also found that the physiological properties of the bacterium, namely the bacterial surface charges and hydrophobicity, also have influence on the bacteria-metal interaction. The adhesion to the metals by Pseudomonas sp. and D. desulfuricans was greater than by the marine SRB isolate. The cell-cell interactions show that there are strong electrostatic repulsion forces between bacterial cells. Cell probe atomic force microscopy has provided some useful insight into the interactions of bacterial cells with the metal surfaces. (c) 2007 Elsevier Inc. All rights reserved.
机译:在自然环境和工程系统中,微生物细胞对水性介质中金属表面的粘附都是重要的现象。用两种方法检查了两种减少硫酸盐的厌氧细菌(Desulfovibrio desulfuricans和当地海洋分离物)和好氧菌(Pseudomonas sp。)对四个抛光金属表面(即316不锈钢,低碳钢,铝和铜)的粘附力。原子力显微镜(AFM)的力谱技术。使用改良的细菌尖端,可以定量细菌细胞与水性介质中金属表面之间的吸引力和排斥力(在纳米牛顿范围内)。结果表明,在所研究的金属中,细菌对铝的粘附力最高,而对铜的细菌粘附力最低。细菌对金属的粘附力受静电力和金属表面疏水性的影响。还发现细菌的生理特性,即细菌表面电荷和疏水性,也影响细菌-金属相互作用。假单胞菌对金属的附着力。和D.desulfuricans大于海洋SRB分离。细胞间的相互作用表明细菌细胞之间有很强的静电排斥力。细胞探针原子力显微镜为细菌细胞与金属表面的相互作用提供了一些有用的见识。 (c)2007 Elsevier Inc.保留所有权利。

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