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离子强度、营养物质和pH值对细菌附着于金属的影响。

The influence of ionic strength, nutrients and pH on bacterial adhesion to metals.

作者信息

Sheng Xiaoxia, Ting Yen Peng, Pehkonen Simo Olavi

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore.

出版信息

J Colloid Interface Sci. 2008 May 15;321(2):256-64. doi: 10.1016/j.jcis.2008.02.038. Epub 2008 Feb 29.

Abstract

Bacteria-metal interactions in aqueous solutions are important in biofilm formation, biofouling and biocorrosion problems in the natural environment and engineered systems. In this study, the adhesion forces of two anaerobes (Desulfovibrio desulfuricans and Desulfovibrio singaporenus) and an aerobe (Pseudomonas sp.) to stainless steel 316 in various aqueous systems were quantified using atomic force microscopy (AFM) with a cell probe. Results show that the nutrient and ionic strength of the solutions influence the bacteria-metal interactions. The bacteria-metal adhesion force was reduced in the presence of the nutrients in the solution, because a trace organic film was formed and thus decreased the metal surface wettability. Stronger ionic strength in the solution results in a larger bacteria-metal adhesion force, which is due to the stronger electrostatic attraction force between the positively charged metal surface and negatively charged bacterial surface. Solution pH also influences the interaction between the bacterial cells and the metal surface; the bacteria-metal adhesion force reached its highest value when the pH of the solution was near the isoelectric point of the bacteria, i.e. at the zero point charge. The adhesion forces at pH 9 were higher than at pH 7 due to the increase in the attraction between Fe ions and negative carboxylate groups.

摘要

水溶液中的细菌与金属相互作用在自然环境和工程系统中的生物膜形成、生物污垢和生物腐蚀问题中具有重要意义。在本研究中,使用带有细胞探针的原子力显微镜(AFM)对两种厌氧菌(脱硫脱硫弧菌和新加坡脱硫弧菌)和一种需氧菌(假单胞菌属)在各种水体系中与316不锈钢的粘附力进行了量化。结果表明,溶液的营养成分和离子强度会影响细菌与金属的相互作用。溶液中存在营养成分时,细菌与金属的粘附力会降低,这是因为形成了一层微量有机膜,从而降低了金属表面的润湿性。溶液中较强的离子强度会导致更大的细菌与金属粘附力,这是由于带正电的金属表面与带负电的细菌表面之间存在更强的静电吸引力。溶液pH值也会影响细菌细胞与金属表面之间的相互作用;当溶液pH值接近细菌的等电点,即零电荷点时,细菌与金属的粘附力达到最大值。由于铁离子与负羧基之间吸引力的增加,pH值为9时的粘附力高于pH值为7时的粘附力。

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