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      Frequency of transferable multiple antibiotic resistance amongst coliform bacteria isolated from a treated sewage effluent in Antofagasta, Chile

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          Abstract

          Antibiotic-resistant coliform bacteria from raw and treated water from activated sludge of a sewage treatment plant were isolated on eosin methylene blue agar (EMB) plates in the separate presence of ampicillin, tetracycline, chloramphenicol and streptomycin. Antibiotic resistant coliforms obtained from inflow and effluent waters were studied to determine influences of treatment on the species composition, resistance patterns and transferable resistance in these bacteria. The bacterial counts obtained showed a high proportion of antibiotic resistant coliforms in the treated effluent. The resistant coliform species were eliminated at different rates by the treatment. Escherichia coli decreased, whereas the proportion of Klebsiella sp increased. The percentage of multiple-resistant isolates increased at the end of the treatment process. The high frequency of resistance was to ampicillin, followed by tetracycline and sulpha-trimethoprim. Moderate incidence of resistance was to streptomycin, chloramphenicol and cephradine. The lowest rate of resistance was to kanamicin and nalidixic acid. Mating experiments of multiple-resistant coliforms with an E. coli K-12 donor confirmed the capability of transferring its resistance. The results of this study suggested that wastewater treatment could reduce the total number of enteric bacteria in sewage, but may increase the proportion of antibiotic resistant coliforms in effluent water. Environmental release and agricultural use of treated sewage effluent containing bacteria having elevated antibiotic resistance levels presents a potential public health risk, as well as the risk of transferring the antibiotic resistance to bacterial populations in the environment.

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          Most cited references31

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          The challenge of antibiotic resistance.

          S Levy (1998)
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            Antibiotic resistance of E. coli in sewage and sludge.

            The aim of the study is the evaluation of resistance patterns of E. coli in wastewater treatment plants without an evaluation of basic antibiotic resistance mechanisms. Investigations have been done in sewage, sludge and receiving waters from three different sewage treatment plants in southern Austria. A total of 767 E. coli isolates were tested regarding their resistance to 24 different antibiotics. The highest resistance rates were found in E. coli strains of a sewage treatment plant which treats not only municipal sewage but also sewage from a hospital. Among the antimicrobial agents tested, the highest resistance rates in the penicillin group were found for Ampicillin (AM) (up to 18%) and Piperacillin (PIP) (up to 12%); in the cephalosporin group for Cefalothin (CF) (up to 35%) and Cefuroxime-Axetil (CXMAX) (up to 11%); in the group of quinolones for Nalidixic acid (NA) (up to 15%); and for Trimethoprime/Sulfamethoxazole (SXT) (up to 13%) and for Tetracycline (TE) (57%). Median values for E. coli in the inflow (crude sewage) of the plants were between 2.0 x 10(4) and 6.1 x 10(4)CFU/ml (Coli ID-agar, BioMerieux 42017) but showed a 200-fold reduction in all three plants in the effluent. Nevertheless, more than 10(2)CFU E. coli/ml reached the receiving water and thus sewage treatment processes contribute to the dissemination of resistant bacteria in the environment.
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              Association between the consumption of antimicrobial agents in animal husbandry and the occurrence of resistant bacteria among food animals.

              Antimicrobial agents are used in food animals for therapy and prophylaxis of bacterial infections and in feed to promote growth. The use of antimicrobial agents for food animals may cause problems in the therapy of infections by selecting for resistance among bacteria pathogenic for animals or humans. The emergence of resistant bacteria and resistance genes following the use of antimicrobial agents is relatively well documented and it seems evident that all antimicrobial agents will select for resistance. However, current knowledge regarding the occurrence of antimicrobial resistance in food animals, the quantitative impact of the use of different antimicrobial agents on selection for resistance and the most appropriate treatment regimens to limit the development of resistance is incomplete. Surveillance programmes monitoring the occurrence and development of resistance and consumption of antimicrobial agents are urgently needed, as is research into the most appropriate ways to use antimicrobial agents in veterinary medicine to limit the emergence and spread of antimicrobial resistance.
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                Author and article information

                Journal
                ejb
                Electronic Journal of Biotechnology
                Electron. J. Biotechnol.
                Pontificia Universidad Católica de Valparaíso (Valparaíso, , Chile )
                0717-3458
                October 2006
                : 9
                : 5
                Affiliations
                [02] Santiago orgnameUniversidad de Chile orgdiv1Departamento de Ingeniería Civil Chile gcastillo@ 123456ing.uchile.cl
                [01] Antofagasta orgnameUniversidad de Antofagasta orgdiv1Departamento de Tecnología Médica-INDES Chile jsilva@ 123456uantof.cl
                Article
                S0717-34582006000500008 S0717-3458(06)00900508
                10.2225/vol9-issue5-fulltext-7
                0dc41e11-55f9-4cc6-b18c-69030f264c38

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 13 March 2006
                : 05 January 2005
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 31, Pages: 0
                Product

                SciELO Chile

                Self URI: Full text available only in PDF format (EN)
                Categories
                RESEARCH ARTICLES

                antibiotic resistance,coliforms,plasmid,sewage treatment,water pollution

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