Selection for amoxicillin-, doxycycline-, and enrofloxacin-resistant Escherichia coli at concentrations lower than the ECOFF in broiler-derived cecal fermentations

Publication date

2024-10-03

Authors

Swinkels, Aram Franciscus
Fischer, EgilORCID 0000-0002-0599-701XISNI 0000000388292468
Korving, Lisa
Kusters, Nina E
Wagenaar, J.A.ISNI 0000000388430808
Zomer, AldertORCID 0000-0002-0758-5190ISNI 0000000393481634

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Article
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Abstract

Antimicrobial resistance (AMR) is an emerging worldwide problem and a health threat for humans and animals. Antimicrobial usage in human and animal medicine or in agriculture results in selection for AMR. The selective concentration of antimicrobial compounds can be lower than the minimum inhibitory concentration and differs between environments, which can be a reason for bacterial resistance. Therefore, knowledge of the minimal selective concentration (MSC), under natural conditions, is essential to understand the selective window of bacteria when exposed to residual antimicrobials. In this study, we estimated the MSCs of three antimicrobials, amoxicillin, doxycycline, and enrofloxacin in a complex microbial community by conducting fermentation assays with cecal material derived from broilers. We examined the phenotypic resistance of Escherichia coli, resistome, and microbiome after 6 and 30 hours of fermenting in the presence of the antimicrobials of interest. The concentrations were estimated to be 10–100 times lower than the epidemiological cut-off values in E. coli for the respective antimicrobials as determined by EUCAST, resulting in an MSC between 0.08 and 0.8 mg∕L for amoxicillin, 0.4 and 4 mg∕L for doxycycline, and 0.0125 and 0.125 mg∕L for enrofloxacin. Additionally, resistome analysis provided an MSC for doxycycline between 0.4 and 4 mg∕L, but amoxicillin and enrofloxacin exposure did not induce a significant difference. Our findings indicate at which concentrations there is still selection for antimicrobial-resistant bacteria. This knowledge can be used to manage the risk of the emergence of antimicrobial-resistant bacteria.

Keywords

E. coli, antimicrobial compounds, antimicrobial resistance, minimal selective concentration, poultry, resistance genes, SDG 3 - Good Health and Well-being

Citation

Swinkels, A F, Fischer, E A J, Korving, L, Kusters, N E, Wagenaar, J A & Zomer, A L 2024, 'Selection for amoxicillin-, doxycycline-, and enrofloxacin-resistant Escherichia coli at concentrations lower than the ECOFF in broiler-derived cecal fermentations', Microbiology spectrum, vol. 12, no. 10, e0097024. https://doi.org/10.1128/spectrum.00970-24