Literature DB >> 20640853

Prevalence and concentration of non-tuberculous mycobacteria in cooling towers by means of quantitative PCR: a prospective study.

Bárbara Adrados1, Esther Julián, Francesc Codony, Eduard Torrents, Marina Luquin, Jordi Morató.   

Abstract

There is an increasing level of interest in non-tuberculous mycobacteria (NTM) due to the increasing reported rates of diseases caused by them. Although it is well known that NTM are widely distributed in the environment it is necessary to identify its reservoirs to prevent possible infections. In this study, we aimed to investigate the occurrence and levels of NTM in cooling towers to provide evidences for considering these settings as possible sources of respiratory infections. In the current study, we detected and quantified the presence of NTM by means of a rapid method in water samples taken from 53 cooling towers of an urban area (Barcelona, Spain). A genus-specific quantitative PCR (Q-PCR) assay with a quantification limit (QL) of 500 cells l(-1) was used. 56% (30) of samples were positive with a concentration range from 4.6 × 10(3) to 1.79 × 10(6) cells l(-1). In some cases (9/30), samples were positive but with levels below the QL. The colonization rate confirmed that cooling towers could be considered as a potential reservoir for NTM. This study also evaluated Q-PCR as a useful method to detect and quantify NTM in samples coming from environmental sources.

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Year:  2010        PMID: 20640853     DOI: 10.1007/s00284-010-9706-2

Source DB:  PubMed          Journal:  Curr Microbiol        ISSN: 0343-8651            Impact factor:   2.188


  26 in total

Review 1.  An official ATS/IDSA statement: diagnosis, treatment, and prevention of nontuberculous mycobacterial diseases.

Authors:  David E Griffith; Timothy Aksamit; Barbara A Brown-Elliott; Antonino Catanzaro; Charles Daley; Fred Gordin; Steven M Holland; Robert Horsburgh; Gwen Huitt; Michael F Iademarco; Michael Iseman; Kenneth Olivier; Stephen Ruoss; C Fordham von Reyn; Richard J Wallace; Kevin Winthrop
Journal:  Am J Respir Crit Care Med       Date:  2007-02-15       Impact factor: 21.405

2.  Optimization of methods for detecting Mycobacterium avium subsp. paratuberculosis in environmental samples using quantitative, real-time PCR.

Authors:  Kimberly L Cook; Jenks S Britt
Journal:  J Microbiol Methods       Date:  2006-12-30       Impact factor: 2.363

Review 3.  Lung disease due to the more common nontuberculous mycobacteria.

Authors:  Stephen K Field; Robert L Cowie
Journal:  Chest       Date:  2006-06       Impact factor: 9.410

4.  Molecular identification of potential pathogens in water and air of a hospital therapy pool.

Authors:  Largus T Angenent; Scott T Kelley; Allison St Amand; Norman R Pace; Mark T Hernandez
Journal:  Proc Natl Acad Sci U S A       Date:  2005-03-15       Impact factor: 11.205

5.  Detection and identification of mycobacteria by amplification of the internal transcribed spacer regions with genus- and species-specific PCR primers.

Authors:  H Park; H Jang; C Kim; B Chung; C L Chang; S K Park; S Song
Journal:  J Clin Microbiol       Date:  2000-11       Impact factor: 5.948

6.  Non-tuberculous mycobacteria: patterns of isolation. A multi-country retrospective survey.

Authors:  N Martín-Casabona; A R Bahrmand; J Bennedsen; V Ostergaard Thomsen; M Curcio; M Fauville-Dufaux; K Feldman; M Havelkova; M L Katila; K Köksalan; M F Pereira; F Rodrigues; G E Pfyffer; F Portaels; J Rosselló Urgell; S Rüsch-Gerdes; E Tortoli; V Vincent; B Watt
Journal:  Int J Tuberc Lung Dis       Date:  2004-10       Impact factor: 2.373

Review 7.  Pulmonary disease due to nontuberculous mycobacteria.

Authors:  Jeffrey Glassroth
Journal:  Chest       Date:  2008-01       Impact factor: 9.410

8.  Occupational and environmental lung diseases: an overview.

Authors:  F E Speizer
Journal:  Environ Health Perspect       Date:  2000-08       Impact factor: 9.031

Review 9.  Mycobacterial aerosols and respiratory disease.

Authors:  Joseph O Falkinham
Journal:  Emerg Infect Dis       Date:  2003-07       Impact factor: 6.883

Review 10.  Emerging waterborne pathogens: can we kill them all?

Authors:  Nena Nwachcuku; Charles P Gerba
Journal:  Curr Opin Biotechnol       Date:  2004-06       Impact factor: 9.740

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  5 in total

Review 1.  Methodological approaches for monitoring opportunistic pathogens in premise plumbing: A review.

Authors:  Hong Wang; Emilie Bédard; Michèle Prévost; Anne K Camper; Vincent R Hill; Amy Pruden
Journal:  Water Res       Date:  2017-03-25       Impact factor: 11.236

2.  Environmental reservoirs of pathogenic mycobacteria across the Ethiopian biogeographical landscape.

Authors:  Hayley C King; Tanya Khera-Butler; Phillip James; Brian B Oakley; Girume Erenso; Abraham Aseffa; Rob Knight; Elizabeth M Wellington; Orin Courtenay
Journal:  PLoS One       Date:  2017-03-23       Impact factor: 3.240

Review 3.  Carbonic Anhydrase Inhibitors as Novel Drugs against Mycobacterial β-Carbonic Anhydrases: An Update on In Vitro and In Vivo Studies.

Authors:  Ashok Aspatwar; Jean-Yves Winum; Fabrizio Carta; Claudiu T Supuran; Milka Hammaren; Mataleena Parikka; Seppo Parkkila
Journal:  Molecules       Date:  2018-11-08       Impact factor: 4.411

Review 4.  The microbiome of the built environment and mental health.

Authors:  Andrew J Hoisington; Lisa A Brenner; Kerry A Kinney; Teodor T Postolache; Christopher A Lowry
Journal:  Microbiome       Date:  2015-12-17       Impact factor: 14.650

5.  A spatial epidemiological analysis of nontuberculous mycobacterial infections in Queensland, Australia.

Authors:  Michael P Chou; Archie C A Clements; Rachel M Thomson
Journal:  BMC Infect Dis       Date:  2014-05-21       Impact factor: 3.090

  5 in total

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