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1.
J Appl Microbiol ; 112(6): 1244-56, 2012 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-22443397

RESUMO

AIMS: Open cooling towers are frequent sources of infections with Legionella pneumophila. The gold standard for the detection of Leg. pneumophila is based on cultivation lasting up to 10 days and detecting only culturable cells. Alternative fluorescence in situ hybridization (FISH) protocols have been proposed, but they result in faint fluorescence signals and lack specificity because of cross-hybridization with other Legionella species. Our aim was thus to develop a new FISH protocol for rapid and specific detection of Leg. pneumophila in water samples. METHODS AND RESULTS: A novel catalysed reporter deposition FISH (CARD-FISH) protocol for the detection of Leg. pneumophila was developed, which significantly enhanced signal intensity as well as specificity of the probe through the use of a novel competitor probe. The developed protocol was compared with the culture method for monitoring the seasonal development of culturable and nonculturable Leg. pneumophila in two hospital cooling tower systems. Seasonal fluctuations of Leg. pneumophila concentrations detected via CARD-FISH were related to the development of the total bacterial community in both cooling towers, with temperature and biocide as the main factors controlling this development. CONCLUSIONS: Our results clearly showed that the majority of the Leg. pneumophila cells were in a nonculturable state. Thus, detection of Leg. pneumophila with culture methods may underestimate the total numbers of Leg. pneumophila present. SIGNIFICANCE AND IMPACT OF THE STUDY: Rapid, sensitive and specific detection and quantification of Leg. pneumophila in water systems is prerequisite for reliable risk estimation. The new protocol significantly improves current methodology and can be used to monitor and screen for Leg. pneumophila concentrations in cooling towers or other water systems.


Assuntos
Microbiologia Ambiental , Hospitais , Hibridização in Situ Fluorescente/métodos , Legionella pneumophila/isolamento & purificação , Doença dos Legionários/prevenção & controle , Aerossóis , Animais , Legionella pneumophila/genética , Doença dos Legionários/microbiologia , Doença dos Legionários/transmissão , Sensibilidade e Especificidade , Temperatura
2.
Water Sci Technol ; 63(9): 2010-6, 2011.
Artigo em Inglês | MEDLINE | ID: mdl-21902043

RESUMO

The electrochemical advanced oxidation process (EAOP) with diamond electrodes may serve as an additional technology to the currently approved methods for water disinfection. Only few data exist on the microbicidal effect of the EAOP. The aim of our study was to investigate the microbicidal effect of a flow-through oxidation cell with diamond electrodes, using Pseudomonas aeruginosa as the test organism. Without electrical current the EAOP had no measurable effect on investigated microbiological and chemical parameters. For direct electrical current a stronger impact was observed at low flow rate than at higher flow rate. Depending on the contact time of the oxidants and the type of quenching reagent added, inactivation of P. aeruginosa was in the range log 1.6-3.6 at the higher flow rate and log 2.4-4.4 at the lower rate. Direct electrical current showed a stronger microbicidal effect than alternating current (maximum reduction log 4.0 and log 2.9, respectively). The microbiological results of experiments with this EAOP prototype revealed higher standard deviations than expected, based on our experience with standard water disinfection methods. Safe use of an EAOP system requires operating parameters to be defined and used accurately, and thus specific monitoring tests must be developed.


Assuntos
Diamante , Desinfecção/métodos , Técnicas Eletroquímicas/métodos , Pseudomonas aeruginosa/fisiologia , Microbiologia da Água , Eletrodos , Oxirredução
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