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Susceptibility of Legionella Strains to the Chlorinated Biocide, Monochloramine

机译:军团菌菌株对氯化杀菌剂一氯胺的敏感性

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摘要

Members of the Legionella genus find suitable conditions for their growth and survival in nuclear power plant cooling circuits. To limit the proliferation of Legionella pathogenic bacteria in nuclear power plant cooling circuits, and ensure that levels remain below regulatory thresholds, monochloramine treatment can be used. Although the treatment is highly effective, i.e. it reduces Legionella numbers by over 99%, Legionella bacteria can still be detected at low concentrations and rapid re-colonisation of circuits can occur after the treatment has ceased. The aim of this study was to develop an in vitro methodology for determining the intrinsic susceptibility of L. pneumophila strains, collected from various nuclear power plant cooling circuits subjected to different treatment conditions. The methodology was developed by using an original approach based on response surface methodology (RSM) combined with a multifactorial experimental design. The susceptibility was evaluated by the Ct factor. The susceptibility of environmental strains varies widely and is, for some strains, greater than that of known tolerant species; however, strain susceptibility was not related to treatment conditions. Selection pressure induced by monochloramine use did not result in the selection of more tolerant Legionella strains and did not explain the detection of Legionella during treatment or the rapid re-colonisation of cooling circuits after disinfection has ceased.
机译:军团菌属的成员在核电站冷却回路中找到适合其生长和生存的条件。为了限制军团菌致病菌在核电站冷却回路中的扩散,并确保其水平保持在规定的阈值以下,可以使用一氯胺处理。尽管这种治疗非常有效,即可以将军团菌减少99%以上,但仍可以在低浓度下检测到军团菌细菌,并且在治疗停止后可以迅速重新定殖。这项研究的目的是开发一种体外方法,用于确定嗜肺乳杆菌的固有敏感性,该菌株是从经受不同处理条件的各种核电厂冷却回路收集的。该方法是通过使用基于响应面方法(RSM)的原始方法结合多因素实验设计而开发的。敏感性通过Ct因子评估。环境菌株的敏感性变化很大,对于某些菌株,其敏感性要大于已知的耐性种。但是,菌株的敏感性与治疗条件无关。一氯胺使用引起的选择压力不会导致选择耐受性更强的军团菌菌株,也无法解释在治疗过程中检测到军团菌或在消毒停止后迅速重新定型冷却回路。

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