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Influence of temperature and plumbing material selection on biofilm formation and growth of Legionella pneumophila in a model potable water system containing complex microbial flora.

机译:在包含复杂微生物菌群的模型饮用水系统中温度和管道材料选择对嗜肺军团菌生物膜形成和生长的影响。

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摘要

Survival and growth of Legionella pneumophila in both biofilm and planktonic phases were determined with a two-stage model system. The model used filter-sterilized tap water as the sole source of nutrient to culture a naturally occurring mixed population of microorganisms including virulent L. pneumophila. At 20 degrees C, L. pneumophila accounted for a low proportion of biofilm flora on polybutylene and chlorinated polyvinyl chloride, but was absent from copper surfaces. The pathogen was most abundant on biofilms on plastics at 40 degrees C, where it accounted for up to 50% of the total biofilm flora. Copper surfaces were inhibitory to total biofouling and included only low numbers of L. pneumophila organisms. The pathogen was able to survive in biofilms on the surface of the plastic materials at 50 degrees C, but was absent from the copper surfaces at the same temperature. L. pneumophila could not be detected in the model system at 60 degrees C. In the presence of copper surfaces, biofilms forming on adjacent control glass surfaces were found to incorporate copper ions which subsequently inhibited colonization of their surfaces. This work suggests that the use of copper tubing in water systems may help to limit the colonization of water systems by L. pneumophila.
机译:用两阶段模型系统确定嗜肺军团菌在生物膜阶段和浮游阶段的存活和生长。该模型使用经过过滤灭菌的自来水作为养分的唯一来源,以培养自然混合的微生物群,包括强毒的肺炎链球菌。在20摄氏度时,嗜肺乳杆菌在聚丁烯和氯化聚氯乙烯上的生物膜菌群所占比例较低,但在铜表面却不存在。在40摄氏度时,病原体在塑料生物膜上的含量最高,占生物膜菌群总数的50%。铜表面抑制了总的生物结垢,并且仅包含少量的嗜肺乳杆菌。该病原体能够在50摄氏度的温度下在塑料材料表面的生物膜中生存,但在相同温度下却不存在于铜表面。在60°C的模型系统中无法检测到嗜肺乳杆菌。在存在铜表面的情况下,发现在相邻的对照玻璃表面上形成的生物膜中掺入了铜离子,这些铜离子随后抑制了其表面的定殖。这项工作表明在水系统中使用铜管可能有助于限制肺炎乳杆菌在水系统中的定殖。

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