A probabilistic approach to assess antibiotic resistance development risks in environmental compartments and its application to an intensive aquaculture production scenario

被引:50
作者
Rico, Andreu [1 ]
Jacobs, Rianne [2 ]
Van den Brink, Paul J. [3 ,4 ]
Tello, Alfredo [5 ]
机构
[1] Univ Alcala, IMDEA Water Inst, Sci & Technol Campus,Ave Punto Com 2,POB 28805, Madrid, Spain
[2] Natl Inst Publ Hlth & Environm RIVM, POB 1, NL-3720 BA Bilthoven, Netherlands
[3] Wageningen Univ, Dept Aquat Ecol & Water Qual Management, POB 47, NL-6700 AA Wageningen, Netherlands
[4] Wageningen Environm Res, POB 47, NL-6700 AA Wageningen, Netherlands
[5] INTESAL Salmon Chile, Inst Tecnol Salmon, Juan Soler Manfredini 41, Oficina 1802, Puerto Montt, Chile
关键词
Antibiotics; Antibiotic resistance; Risk assessment; Environment; Aquaculture; SPECIES SENSITIVITY DISTRIBUTIONS; HUMAN HEALTH-RISKS; MEKONG DELTA; WASTE-WATER; VETERINARY MEDICINES; BACTERIA; GENES; CATFISH; DIVERSITY; SOILS;
D O I
10.1016/j.envpol.2017.08.079
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Estimating antibiotic pollution and antibiotic resistance development risks in environmental compartments is important to design management strategies that advance our stewardship of antibiotics. In this study we propose a modelling approach to estimate the risk of antibiotic resistance development in environmental compartments and demonstrate its application in aquaculture production systems. We modelled exposure concentrations for 12 antibiotics used in Vietnamese Pangasius catfish production using the ERA-AQUA model. Minimum selective concentration (MSC) distributions that characterize the selective pressure of antibiotics on bacterial communities were derived from the European Committee on Antimicrobial Susceptibility Testing (EUCAST) Minimum Inhibitory Concentration dataset. The antibiotic resistance development risk (RDR) for each antibiotic was calculated as the probability that the antibiotic exposure distribution exceeds the MSC distribution representing the bacterial community. RDRs in pond sediments were nearly 100% for all antibiotics. Median RDR values in pond water were high for the majority of the antibiotics, with rifampicin, levofloxacin and ampicillin having highest values. In the effluent mixing area, RDRs were low for most antibiotics, with the exception of amoxicillin, ampicillin and trimethoprim, which presented moderate risks, and rifampicin and levofloxacin, which presented high risks. The RDR provides an efficient means to benchmark multiple antibiotics and treatment regimes in the initial phase of a risk assessment with regards to their potential to develop resistance in different environmental compartments, and can be used to derive resistance threshold concentrations. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:918 / 928
页数:11
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