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The efficacy of sewage influent-isolated bacteriophages on Pseudomonas aeruginosa in a mixed-species biofilm

机译:混合物种生物膜中铜绿假单胞菌的污水进水分离噬菌体的功效

摘要

The growth of environmentally persistent biofilms in cooling towers causes several associated problems, including microbiologically-induced corrosion (MIC) and biofouling. Current chemical control methods are not only ineffective against biofilms and costly to procure, they also have downstream environmental impacts when released untreated, or incur additional treatment costs. Bacteriophages are alternative biofilm control agents that have the potential to be more effective, cheaper to produce and yet have a more benign effect on the environment. In this study, biofilms grown under conditions simulating seawater fed cooling towers were characterized and the differences in growth and community make-up across time and different substrates were assessed. An MIC associated bacterium common in cooling tower water, P. aeruginosa, was chosen. Seven bacteriophage strains found to be effective against the chosen bacterium were isolated from wastewater influent. The relative effectiveness of these strains was measured against P. aeruginosa across different salinities. Separate biofilms fed with P. aeruginosa enriched seawater were characterized and the effectiveness of the isolated strains, singly and in cocktails, against the enriched biofilms was measured.
机译:冷却塔中环境持久性生物膜的生长引起若干相关问题,包括微生物引起的腐蚀(MIC)和生物污染。当前的化学控制方法不仅对生物膜无效并且采购成本高,而且如果未经处理释放也会对下游环境造成影响,或产生额外的处理成本。噬菌体是替代性的生物膜控制剂,具有更有效,更便宜的生产潜力,但对环境具有更有益的作用。在这项研究中,对在模拟海水补给的冷却塔条件下生长的生物膜进行了表征,并评估了随着时间和不同基质的生长和群落组成的差异。选择了冷却塔水中铜绿假单胞菌常见的MIC相关细菌。从废水进水中分离出七种对所选细菌有效的噬菌体菌株。测量了这些菌株在不同盐度下对铜绿假单胞菌的相对有效性。表征了用富含铜绿假单胞菌的海水喂养的单独的生物膜,并测量了分离菌株单独和在鸡尾酒中对富含生物膜的有效性。

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    Yap Scott;

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  • 年度 2016
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  • 正文语种 en
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