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Legionella pneumophila and Protozoan Hosts: Implications for the Control of Hospital and Potable Water Systems

机译:Legionella肺炎和原生动物主持人:对医院和饮用水系统控制的影响

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摘要

Legionella pneumophila is an opportunistic waterborne pathogen of public health concern. It is the causative agent of Legionnaires’ disease (LD) and Pontiac fever and is ubiquitous in manufactured water systems, where protozoan hosts and complex microbial communities provide protection from disinfection procedures. This review collates the literature describing interactions between L. pneumophila and protozoan hosts in hospital and municipal potable water distribution systems. The effectiveness of currently available water disinfection protocols to control L. pneumophila and its protozoan hosts is explored. The studies identified in this systematic literature review demonstrated the failure of common disinfection procedures to achieve long term elimination of L. pneumophila and protozoan hosts from potable water. It has been demonstrated that protozoan hosts facilitate the intracellular replication and packaging of viable L. pneumophila in infectious vesicles; whereas, cyst-forming protozoans provide protection from prolonged environmental stress. Disinfection procedures and protozoan hosts also facilitate biogenesis of viable but non-culturable (VBNC) L. pneumophila which have been shown to be highly resistant to many water disinfection protocols. In conclusion, a better understanding of L. pneumophila-protozoan interactions and the structure of complex microbial biofilms is required for the improved management of L. pneumophila and the prevention of LD.
机译:军团菌肺炎是公共卫生问题的机会主义的水性病原体。它是军团氏病(LD)和庞氏症的致病因子,在制造的水系统中普遍存在,其中原生动物宿主和复杂的微生物群落提供免受消毒程序的保护。该审查整理文献描述了描述L.Pneumophila与医院饮用水分配系统中的L.Pneumophila和原生动物主持人之间的相互作用。目前可用的水消毒方案对控制L.Pneumophila及其原生动物主持人的有效性。在该系统文献综述中确定的研究证明了常见的消毒程序失败,以实现来自饮用水的长期消除L. Pneumophila和原生动物宿主。已经证明,原生动物宿主有助于在传染性囊泡中的可行L.肺炎的细胞内复制和包装;虽然,形成囊肿形成的原生动物提供延长环境压力的保护。消毒程序和原生动物宿主还促进了可行但非培养的(VBNC)L.PNEumophila的生物发生,这已被证明对许多水消毒方案具有高度抗性。总之,对于L.Pneumophila的改善和预防LD的改善,需要更好地了解L.Pneumophila-原生动物相互作用和复杂微生物生物膜的结构。

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