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Published on: February 23, 2024
Antimicrobial Resistance Profile of Acinetobacter spp. Isolates from Retail Meat Samples under
Min-Hyeok Cha1, Sun Hee Kim2, Seokhwan Kim3
1Laboratory of Food Safety and Evaluation, Department of Biotechnology, Korea University Graduate School, Seoul 02841, Republic of Korea.
Abstract:
Acinetobacter strains are widely present in the environment. Some antimicrobial-resistant strains of this genus have been implicated in infections acquired in hospitals. Genetic similarities have been reported between Acinetobacter strains in nosocomial infections and those isolated from foods. However, the antimicrobial resistance of Acinetobacter strains in foods, such as meat, remains unclear. This study initially aimed to isolate Campylobacter strains; instead, strains of the genus Acinetobacter were isolated from meat products, and their antimicrobial resistance was investigated. In total, 58 Acinetobacter strains were isolated from 381 meat samples. Of these, 32 strains (38.6%) were from beef, 22 (26.5%) from pork, and 4 (4.8%) from duck meat. Antimicrobial susceptibility tests revealed that 12 strains were resistant to more than one antimicrobial agent, whereas two strains were multidrug-resistant; both strains were resistant to colistin. Cephalosporin antimicrobials showed high minimal inhibitory concentration against Acinetobacter strains. Resfinder analysis showed that one colistin-resistant strain carried mcr-4.3; this plasmid type was not confirmed, even when analyzed with PlasmidFinder. Analysis of the contig harboring mcr-4.3 using BLAST confirmed that this contig was related to mcr-4.3 of Acinetobacter baumannii. The increase in antimicrobial resistance in food production environments increases the resistance rate of Acinetobacter strains present in meat, inhibits the isolation of Campylobacter strains, and acts as a medium for the transmission of antimicrobial resistance in the environment. Therefore, further investigations are warranted to prevent the spread of antimicrobial resistance in food products.
Insights
Antimicrobial-resistant Acinetobacter strains were found in meat products. Two multidrug-resistant strains, one carrying a colistin resistance gene, highlight the need to monitor food for antimicrobial resistance transmission.
Area of Science:
- Microbiology
- Food Safety
- Antimicrobial Resistance
Background:
- Acinetobacter strains are common environmental bacteria.
- Antimicrobial-resistant Acinetobacter strains are linked to hospital infections.
- The presence and resistance of Acinetobacter in meat products are not well understood.
Purpose of the Study:
- To investigate the antimicrobial resistance of Acinetobacter strains isolated from meat products.
- To identify specific resistance genes and mechanisms in these strains.
Main Methods:
- Isolation of Acinetobacter strains from 381 meat samples (beef, pork, duck).
- Antimicrobial susceptibility testing to determine resistance patterns.
- Molecular analysis (Resfinder, PlasmidFinder, BLAST) to identify resistance genes (e.g., mcr-4.3).
Main Results:
- 58 Acinetobacter strains were isolated from meat.
- 12 strains showed resistance to multiple antimicrobials; two were multidrug-resistant.
- Two multidrug-resistant strains were resistant to colistin; one carried the mcr-4.3 gene, related to Acinetobacter baumannii.
Conclusions:
- Meat products can harbor antimicrobial-resistant Acinetobacter strains.
- The presence of resistance genes like mcr-4.3 in food raises concerns for public health.
- Further research is crucial to prevent the spread of antimicrobial resistance through the food chain.
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