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Impact of a Risk Management Plan on Legionella Contamination of Dental Unit Water

Author

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  • Erica Leoni

    (Department of Biomedical and Neuromotor Sciences, Unit of Hygiene, Public Health and Medical Statistics, University of Bologna, via San Giacomo 12, 40126, Bologna, Italy)

  • Laura Dallolio

    (Department of Biomedical and Neuromotor Sciences, Unit of Hygiene, Public Health and Medical Statistics, University of Bologna, via San Giacomo 12, 40126, Bologna, Italy)

  • Francesca Stagni

    (Department of Biomedical and Neuromotor Sciences, Unit of Odontostomatological Sciences, University of Bologna, via San Vitale 59, 40125, Bologna, Italy)

  • Tiziana Sanna

    (Department of Biomedical and Neuromotor Sciences, School of Hygiene and Preventive Medicine, University of Bologna, via San Giacomo 12, 40126, Bologna, Italy)

  • Giovanni D'Alessandro

    (Department of Biomedical and Neuromotor Sciences, Unit of Odontostomatological Sciences, University of Bologna, via San Vitale 59, 40125, Bologna, Italy)

  • Gabriela Piana

    (Department of Biomedical and Neuromotor Sciences, Unit of Odontostomatological Sciences, University of Bologna, via San Vitale 59, 40125, Bologna, Italy)

Abstract

The study aimed to assess the prevalence of Legionella spp. in dental unit waterlines of a dental clinic and to verify whether the microbiological parameters used as indicators of water quality were correlated with Legionella contamination. A risk management plan was subsequently implemented in the dental health care setting, in order to verify whether the adopted disinfection protocols were effective in preventing Legionella colonization. The water delivered from syringes and turbines of 63 dental units operating in a dental clinic, was monitored for counts of the heterotrophic bacteria P. aeruginosa and Legionella spp. (22 °C and 37 °C). At baseline, output water from dental units continuously treated with disinfection products was more compliant with the recommended standards than untreated and periodically treated water. However, continuous disinfection was still not able to prevent contamination by Legionella and P. aeruginosa . Legionella was isolated from 36.4%, 24.3% and 53.3% of samples from untreated, periodically and continuously treated waterlines, respectively. The standard microbiological parameters used as indicators of water quality proved to be unreliable as predictors of the presence of Legionella , whose source was identified as the tap water used to supply the dental units. The adoption of control measures, including the use of deionized water in supplying the dental unit waterlines and the application of a combined protocol of continuous and periodic disinfection, with different active products for the different devices, resulted in good control of Legionella contamination. The efficacy of the measures adopted was mainly linked to the strict adherence to the planned protocols, which placed particular stress on staff training and ongoing environmental monitoring.

Suggested Citation

  • Erica Leoni & Laura Dallolio & Francesca Stagni & Tiziana Sanna & Giovanni D'Alessandro & Gabriela Piana, 2015. "Impact of a Risk Management Plan on Legionella Contamination of Dental Unit Water," IJERPH, MDPI, vol. 12(3), pages 1-15, February.
  • Handle: RePEc:gam:jijerp:v:12:y:2015:i:3:p:2344-2358:d:46093
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    References listed on IDEAS

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    1. Laura Dallolio & Amalia Scuderi & Maria S. Rini & Sabrina Valente & Patrizia Farruggia & Maria A. Bucci Sabattini & Gianandrea Pasquinelli & Anna Acacci & Greta Roncarati & Erica Leoni, 2014. "Effect of Different Disinfection Protocols on Microbial and Biofilm Contamination of Dental Unit Waterlines in Community Dental Practices," IJERPH, MDPI, vol. 11(2), pages 1-13, February.
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    Cited by:

    1. Anna Maria Spagnolo & Marina Sartini & David Di Cave & Beatrice Casini & Benedetta Tuvo & Maria Luisa Cristina, 2019. "Evaluation of Microbiological and Free-Living Protozoa Contamination in Dental Unit Waterlines," IJERPH, MDPI, vol. 16(15), pages 1-11, July.
    2. Alexandre Baudet & Julie Lizon & Jean-Marc Martrette & Frédéric Camelot & Arnaud Florentin & Céline Clément, 2019. "Dental Unit Waterlines: A Survey of Practices in Eastern France," IJERPH, MDPI, vol. 16(21), pages 1-8, November.
    3. Savina Ditommaso & Monica Giacomuzzi & Elisa Ricciardi & Carla M. Zotti, 2016. "Efficacy of a Low Dose of Hydrogen Peroxide (Peroxy Ag + ) for Continuous Treatment of Dental Unit Water Lines: Challenge Test with Legionella pneumophila Serogroup 1 in a Simulated Dental Unit Waterl," IJERPH, MDPI, vol. 13(7), pages 1-10, July.
    4. Samuel Dorevitch, 2015. "Health Effects of Waterborne Contaminants: A Focus on Emerging Concerns," IJERPH, MDPI, vol. 12(10), pages 1-3, October.
    5. Savina Ditommaso & Monica Giacomuzzi & Elisa Ricciardi & Carla M. Zotti, 2016. "Cultural and Molecular Evidence of Legionella spp. Colonization in Dental Unit Waterlines: Which Is the Best Method for Risk Assessment?," IJERPH, MDPI, vol. 13(2), pages 1-10, February.
    6. Orlando J. Castellano Realpe & Johanna C. Gutiérrez & Deisy A. Sierra & Lourdes A. Pazmiño Martínez & Yrneh Y. Prado Palacios & Gustavo Echeverría & Jacobus H. de Waard, 2020. "Dental Unit Waterlines in Quito and Caracas Contaminated with Nontuberculous Mycobacteria: A Potential Health Risk in Dental Practice," IJERPH, MDPI, vol. 17(7), pages 1-11, March.
    7. Alexandre Baudet & Julie Lizon & Jean-Marc Martrette & Frédéric Camelot & Arnaud Florentin & Céline Clément, 2020. "Efficacy of BRS ® and Alpron ® /Bilpron ® Disinfectants for Dental Unit Waterlines: A Six-Year Study," IJERPH, MDPI, vol. 17(8), pages 1-9, April.
    8. Erica Leoni & Federica Catalani & Sofia Marini & Laura Dallolio, 2018. "Legionellosis Associated with Recreational Waters: A Systematic Review of Cases and Outbreaks in Swimming Pools, Spa Pools, and Similar Environments," IJERPH, MDPI, vol. 15(8), pages 1-19, July.

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