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Comparing the Chlorine Disinfection of Detached Biofilm Clusters with Those of Sessile Biofilms and Planktonic Cells in Single- and Dual-Species Cultures ▿ †

机译:比较单物种和双物种培养中分离的生物膜簇与无性生物膜和浮游细胞的氯消毒效果。 ▿ †

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摘要

Although the detachment of cells from biofilms is of fundamental importance to the dissemination of organisms in both public health and clinical settings, the disinfection efficacies of commonly used biocides on detached biofilm particles have not been investigated. Therefore, the question arises whether cells in detached aggregates can be killed with disinfectant concentrations sufficient to inactivate planktonic cells. Burkholderia cepacia and Pseudomonas aeruginosa were grown in standardized laboratory reactors as single species and in coculture. Cluster size distributions in chemostats and biofilm reactor effluent were measured. Chlorine susceptibility was assessed for planktonic cultures, attached biofilm, and particles and cells detached from the biofilm. Disinfection tolerance generally increased with a higher percentage of larger cell clusters in the chemostat and detached biofilm. Samples with a lower percentage of large clusters were more easily disinfected. Thus, disinfection tolerance depended on the cluster size distribution rather than sample type for chemostat and detached biofilm. Intact biofilms were more tolerant to chlorine independent of species. Homogenization of samples led to significantly increased susceptibility in all biofilm samples as well as detached clusters for single-species B. cepacia, B. cepacia in coculture, and P. aeruginosa in coculture. The disinfection efficacy was also dependent on species composition; coculture was advantageous to the survival of both species when grown as a biofilm or as clusters detached from biofilm but, surprisingly, resulted in a lower disinfection tolerance when they were grown as a mixed planktonic culture.
机译:尽管从生物膜上分离细胞对于在公共卫生和临床环境中传播生物至关重要,但尚未研究常用生物杀灭剂对分离的生物膜颗粒的消毒效果。因此,出现的问题是,是否可以用足以使浮游细胞失活的消毒剂浓度杀死聚集的聚集物中的细胞。洋葱伯克霍尔德菌和铜绿假单胞菌在单一的标准实验室反应器中和共培养。测量了化学恒温器和生物膜反应器流出物中簇的大小分布。评估了浮游性培养物,附着的生物膜以及从生物膜脱落的颗粒和细胞对氯的敏感性。消毒耐受性通常随着化学恒温器和分离的生物膜中较大细胞簇的百分比增加而提高。大簇百分比较低的样品更容易消毒。因此,消毒的耐受性取决于簇的大小分布,而不是取决于恒化器和分离的生物膜的样品类型。完整的生物膜对氯的耐受性更高,而与物种无关。样品的均质化显着提高了所有生物膜样品的敏感性,以及单一物种的洋葱伯克霍尔德菌,共培养的洋葱伯克霍尔德和共培养的铜绿假单胞菌的分离簇。消毒效果还取决于物种组成。当以生物膜或从生物膜分离的簇生长时,共培养有利于两种物种的生存,但是令人惊讶的是,当它们以混合浮游培养方式生长时,其杀菌耐受性较低。

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