Antimicrobial resistance of Enterobacter cloacae complex isolates from the surface of muskmelons
Irene Esteban-Cuesta1, Samart Dorn-In1, Nathalie Drees1
1Chair of Food Safety, Veterinary Faculty, Ludwig-Maximilians-University Munich, Schoenleutnerstrasse 8, 85764 Oberschleissheim, Germany.
Abstract:
The increasing antimicrobial resistance (AMR) among pathogenic and opportunistic pathogenic microorganisms is one of the main global public health problems. The consumption of food contaminated with such bacteria (ARB), especially of raw products, might result in the direct acquisition of ARB and in a spread of resistant bacteria along the food chain. The aim of the study was to characterize the antimicrobial susceptibility of potentially extended spectrum β-lactamase (ESBL) producing or AmpC resistant Enterobacteriaceae isolated from the surface of 147 muskmelons from wholesale and retail. A phenotypic analysis was carried out by using minimum inhibitory concentration (MIC) test strips for ESBL detection and MIC susceptibility plates against 14 antimicrobials. Furthermore, ESBL genes, sul-genes and plasmid-mediated AmpC resistance were analyzed by real-time PCR. Additionally, a further insight in the AmpC resistance of isolates of the Enterobacter cloacae complex (ECC) was obtained by analyzing the sequence of the ampC regulatory region (n = 15). A total of 73 potentially resistant Enterobacteriaceae were isolated from 56 muskmelons. Of these, 15 isolates of the ECC were suspicious for ESBL/AmpC resistance, and eleven thereof were positive for the AmpC family EBC. Phenotypic analysis showed diminished susceptibility against "critically" and "highly important" antimicrobials, according to the WHO classification. Furthermore, divergence in the ampC regulatory region was detected between the 15 isolates. These findings highlight the important role that raw produce might play in the transmission of antimicrobial resistances along the food chain.
Insights
Raw muskmelons can carry antimicrobial-resistant bacteria, posing a public health risk. This study found resistant Enterobacteriaceae on muskmelons, highlighting produce as a potential transmission route for antimicrobial resistance (AMR).
Area of Science:
- Food Safety
- Microbiology
- Public Health
Background:
- Antimicrobial resistance (AMR) is a major global health concern.
- Food contaminated with resistant bacteria can spread AMR along the food chain.
- Raw produce consumption is a potential route for acquiring resistant bacteria.
Purpose of the Study:
- To characterize antimicrobial susceptibility of Enterobacteriaceae from muskmelons.
- To detect extended-spectrum β-lactamase (ESBL) and AmpC resistance in Enterobacteriaceae.
- To investigate the role of raw produce in AMR transmission.
Main Methods:
- Isolation and identification of Enterobacteriaceae from muskmelon surfaces.
- Phenotypic antimicrobial susceptibility testing (MIC).
- Molecular analysis: real-time PCR for resistance genes (ESBL, sul, AmpC) and ampC regulatory region sequencing.
Main Results:
- 73 potentially resistant Enterobacteriaceae isolated from 56 muskmelons.
- 11 Enterobacter cloacae complex (ECC) isolates confirmed positive for AmpC resistance.
- Reduced susceptibility observed against WHO "critically" and "highly important" antimicrobials.
- Genetic divergence noted in the ampC regulatory region of ECC isolates.
Conclusions:
- Muskmelons can harbor antimicrobial-resistant Enterobacteriaceae.
- Raw produce plays a significant role in the food chain transmission of AMR.
- Further research into resistance mechanisms and control strategies is warranted.
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