Minimum inhibitory concentration distribution in environmental Legionella spp. isolates

Author:

Sandalakis Vassilios1,Chochlakis Dimosthenis1,Goniotakis Ioannis2,Tselentis Yannis1,Psaroulaki Anna2

Affiliation:

1. Regional Laboratory of Public Health, Medical School, Heraklion, Crete, Greece

2. Laboratory of Clinical Bacteriology, Parasitology, Zoonoses and Geographical Medicine, Voutes – Staurakia 71110, Heraklion, Crete, Greece

Abstract

In Greece standard tests are performed in the watering and cooling systems of hotels’ units either as part of the surveillance scheme or following human infection. The purpose of this study was to establish the minimum inhibitory concentration (MIC) distributions of environmental Legionella isolates for six antimicrobials commonly used for the treatment of Legionella infections, by MIC-test methodology. Water samples were collected from 2004 to 2011 from 124 hotels from the four prefectures of Crete (Greece). Sixty-eight (68) Legionella isolates, comprising L. pneumophila serogroups 1, 2, 3, 5, 6, 8, 12, 13, 15, L. anisa, L. rubrilucens, L. maceachernii, L. quinlivanii, L. oakridgensis, and L. taurinensis, were included in the study. MIC-tests were performed on buffered charcoal yeast extract with α-ketoglutarate, L-cysteine, and ferric pyrophosphate. The MICs were read after 2 days of incubation at 36 ± 1 °C at 2.5% CO2. A large distribution in MICs was recorded for each species and each antibiotic tested. Rifampicin proved to be the most potent antibiotic regardless of the Legionella spp.; tetracycline appeared to have the least activity on our environmental isolates. The MIC-test approach is an easy, although not so cost-effective, way to determine MICs in Legionella spp. These data should be kept in mind especially since these Legionella species may cause human disease.

Publisher

IWA Publishing

Subject

Infectious Diseases,Microbiology (medical),Public Health, Environmental and Occupational Health,Waste Management and Disposal,Water Science and Technology

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