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Influence of Plumbing Materials on Biofilm Formation and Growth of Legionella pneumophila in Potable Water Systems

机译:水暖材料对饮用水系统中嗜肺军团菌生物膜形成和生长的影响

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A two-stage chemostat model of a plumbing system was developed, with tap water as the sole nutrient source. The model system was populated with a naturally occurring inoculum derived from an outbreak of Legionnaires' disease and containing Legionella pneumophila along with associated bacteria and protozoa. The model system was used to develop biofilms on the surfaces of a range of eight plumbing materials under controlled, reproducible conditions. The materials varied in their abilities to support biofilm development and the growth of L. pneumophila. Elastomeric surfaces had the most abundant biofilms supporting the highest numbers of L. pneumophila CFU; this was attributed to the leaching of nutrients for bacterial growth from the materials. No direct relationship existed between total biofouling and the numbers of L. pneumophila CFU.
机译:建立了管道系统的两阶段化粪池模型,以自来水作为唯一的营养源。该模型系统装有源自军团菌病暴发的天然接种物,其中包含嗜肺军团菌以及相关细菌和原生动物。该模型系统用于在受控的,可复制的条件下,在八种管道材料的表面上形成生物膜。这些材料在支持生物膜发展和嗜肺乳杆菌生长方面的能力各不相同。弹性体表面具有最丰富的生物膜,支持最多数量的嗜肺乳杆菌CFU。这归因于从材料中滤出细菌生长所需的营养素。总的生物污染与嗜肺乳杆菌CFU的数量之间没有直接关系。

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