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Reduction of Legionella Spp. in Water and in Soil by a Citrus Plant Extract Vapor

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Date 2014 Jul 27
PMID 25063652
Citations 5
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Abstract

Legionnaires' disease is a severe form of pneumonia caused by Legionella spp., organisms often isolated from environmental sources, including soil and water. Legionella spp. are capable of replicating intracellularly within free-living protozoa, and once this has occurred, Legionella is particularly resistant to disinfectants. Citrus essential oil (EO) vapors are effective antimicrobials against a range of microorganisms, with reductions of 5 log cells ml(-1) on a variety of surfaces. The aim of this investigation was to assess the efficacy of a citrus EO vapor against Legionella spp. in water and in soil systems. Reductions of viable cells of Legionella pneumophila, Legionella longbeachae, Legionella bozemanii, and an intra-amoebal culture of Legionella pneumophila (water system only) were assessed in soil and in water after exposure to a citrus EO vapor at concentrations ranging from 3.75 mg/liter air to 15g/liter air. Antimicrobial efficacy via different delivery systems (passive and active sintering of the vapor) was determined in water, and gas chromatography-mass spectrometry (GC-MS) analysis of the antimicrobial components (linalool, citral, and β-pinene) was conducted. There was up to a 5-log cells ml(-1) reduction in Legionella spp. in soil after exposure to the citrus EO vapors (15 mg/liter air). The most susceptible strain in water was L. pneumophila, with a 4-log cells ml(-1) reduction after 24 h via sintering (15 g/liter air). Sintering the vapor through water increased the presence of the antimicrobial components, with a 61% increase of linalool. Therefore, the appropriate method of delivery of an antimicrobial citrus EO vapor may go some way in controlling Legionella spp. from environmental sources.

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References
1.
Mondello F, Girolamo A, Scaturro M, Ricci M . Determination of Legionella pneumophila susceptibility to Melaleuca alternifolia Cheel (tea tree) oil by an improved broth micro-dilution method under vapour controlled conditions. J Microbiol Methods. 2009; 77(2):243-8. DOI: 10.1016/j.mimet.2009.02.012. View

2.
Currie S, Beattie T, Knapp C, Lindsay D . Legionella spp. in UK composts--a potential public health issue?. Clin Microbiol Infect. 2013; 20(4):O224-9. DOI: 10.1111/1469-0691.12381. View

3.
Chang C, Chang W, Chang S . Influence of pH on bioactivity of cinnamon oil against Legionella pneumophila and its disinfection efficacy in hot springs. Water Res. 2008; 42(20):5022-30. DOI: 10.1016/j.watres.2008.09.006. View

4.
Fisher K, Phillips C . The effect of lemon, orange and bergamot essential oils and their components on the survival of Campylobacter jejuni, Escherichia coli O157, Listeria monocytogenes, Bacillus cereus and Staphylococcus aureus in vitro and in food systems. J Appl Microbiol. 2006; 101(6):1232-40. DOI: 10.1111/j.1365-2672.2006.03035.x. View

5.
Cooper I, Hanlon G . Resistance of Legionella pneumophila serotype 1 biofilms to chlorine-based disinfection. J Hosp Infect. 2009; 74(2):152-9. DOI: 10.1016/j.jhin.2009.07.005. View