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Legionella pneumophila Outer Membrane Vesicles: Isolation and Analysis of Their Pro-inflammatory Potential on Macrophages
Published on: February 22, 2017
Virulence Traits of Environmental and Clinical Legionella pneumophila Multilocus Variable-Number Tandem-Repeat
Yehonatan Sharaby1, Sarah Rodríguez-Martínez1, Marina Pecellin2
1Department of Evolutionary and Environmental Biology, Faculty of Natural Sciences, University of Haifa, Haifa, Israel.
Abstract:
Legionella pneumophila causes water-based infections resulting in severe pneumonia. Recently, we showed that different MLVA-8 (multilocus variable-number tandem-repeat analysis using 8 loci) genotypes dominated different sites of a drinking-water distribution system. Each genotype displayed a unique temperature-dependent growth behavior. Here we compared the pathogenicity potentials of different MLVA-8 genotypes of environmental and clinical strains. The virulence traits studied were hemolytic activity and cytotoxicity toward amoebae and macrophages. Clinical strains were significantly more hemolytic than environmental strains, while their cytotoxicity toward amoebae was significantly lower at 30°C. No significant differences were detected between clinical and environmental strains in cytotoxicity toward macrophages. Significant differences in virulence were observed between the environmental genotypes (Gt). Gt15 strains showed a significantly higher hemolytic activity. In contrast, Gt4 and Gt6 strains were more infective toward Acanthamoeba castellanii Moreover, Gt4 strains exhibited increased cytotoxicity toward macrophages and demonstrated a broader temperature range of amoebal lysis than Gt6 and Gt15 strains. Understanding the virulence traits of Legionella genotypes may improve the assessment of public health risks of Legionella in drinking water.IMPORTANCELegionella pneumophila is the causative agent of a severe form of pneumonia. Here we demonstrated that clinical strains were significantly more cytotoxic toward red blood cells than environmental strains, while their cytotoxicity toward macrophages was similar. Genotype 4 (Gt4) strains were highly cytotoxic toward amoebae and macrophages and lysed amoebae in a broader temperature range than to the other studied genotypes. The results can explain the relatively high success of Gt4 in the environment and in clinical samples; thus, Gt4 strains should be considered a main factor for the assessment of public health risks of Legionella in drinking water. Our findings shed light on the ecology, virulence, and pathogenicity potential of different L. pneumophila genotypes, which can be a valuable parameter for future modeling and quantitative microbial risk assessment of Legionella in drinking-water systems.
Insights
Different Legionella pneumophila genotypes show varying virulence. Genotype 4 (Gt4) strains are highly cytotoxic to amoebae and macrophages, posing a significant public health risk in drinking water systems.
Area of Science:
- Microbiology
- Environmental Science
- Public Health
Background:
- Legionella pneumophila causes severe pneumonia through waterborne infections.
- MLVA-8 genotypes of L. pneumophila exhibit distinct temperature-dependent growth patterns in water distribution systems.
Purpose of the Study:
- To compare the pathogenicity potentials of different MLVA-8 genotypes of environmental and clinical Legionella pneumophila strains.
- To investigate virulence traits including hemolytic activity and cytotoxicity toward amoebae and macrophages.
Main Methods:
- Comparison of hemolytic activity and cytotoxicity (toward amoebae and macrophages) of environmental and clinical L. pneumophila strains.
- Analysis of virulence differences among specific environmental MLVA-8 genotypes (Gt4, Gt6, Gt15).
Main Results:
- Clinical strains were significantly more hemolytic than environmental strains.
- Genotype 4 (Gt4) strains demonstrated higher cytotoxicity toward amoebae and macrophages and a broader temperature range for amoebal lysis.
- Gt15 strains showed higher hemolytic activity, while Gt4 and Gt6 strains were more infective toward Acanthamoeba castellanii.
Conclusions:
- Virulence traits vary significantly among L. pneumophila genotypes, with Gt4 exhibiting notable pathogenicity.
- Understanding genotype-specific virulence is crucial for assessing public health risks associated with Legionella in drinking water.
- Gt4 strains represent a significant factor in quantitative microbial risk assessment for Legionella in water systems.
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