β-Lactamase Producing Escherichia coli Encoding blaCTX-M and blaCMY Genes in Chicken Carcasses from Egypt

Author:

Abo-Almagd Elham Elsayed1,Sabala Rana Fahmi2,Abd-Elghany Samir Mohammed2,Jackson Charlene R.3ORCID,Ramadan Hazem4ORCID,Imre Kálmán5ORCID,Morar Adriana5ORCID,Herman Viorel6ORCID,Sallam Khalid Ibrahim2ORCID

Affiliation:

1. Oncology Center, Faculty of Medicine, Mansoura University, Mansoura 35516, Egypt

2. Food Hygiene and Control Department, Faculty of Veterinary Medicine, Mansoura University, Mansoura 35516, Egypt

3. Bacterial Epidemiology and Antimicrobial Resistance Research Unit, US National Poultry Research Center, USDA-ARS, Athens, GA 30605, USA

4. Hygiene and Zoonoses Department, Faculty of Veterinary Medicine, Mansoura University, Mansoura 35516, Egypt

5. Department of Animal Production and Veterinary Public Health, Faculty of Veterinary Medicine, University of Life Sciences “King Mihai I” from Timișoara, 300645 Timișoara, Romania

6. Department of Infectious Diseases and Preventive Medicine, Faculty of Veterinary Medicine, University of Life Sciences “King Mihai I” from Timişoara, 300645 Timișoara, Romania

Abstract

Escherichia coli with multidrug resistance and β-lactamase genes may constitute a great public health hazard due to the potential for their transmission to humans through the food chain. This study determined the prevalence, antibiotic resistance profiles, phylogroups, and β-lactamase genes of E. coli isolates from chicken carcasses marketed in Mansoura, Egypt. Interestingly, E. coli was detected in 98% (98/100) of the chicken carcasses examined, which seemed among the highest contamination rates by E. coli worldwide. From the 425 genetically verified uidA gene-positive E. coli, 85 isolates were further studied for antimicrobial resistance profiles, phylogroups, and β-lactamase genes. Interestingly, 89.41% of E. coli (76/85) strains tested against 24 different antibiotics were multidrug-resistant. Of the examined 85 E. coli isolates, 22 (25.88%) isolates harbored blaCTX-M and were resistant to ampicillin, cefazoline, and ceftriaxone, while three of them were resistant to ceftazidime besides. Nine (10.59%) E. coli strains harbored AmpC- β-lactamase blaCMY and were resistant to ampicillin. One isolate co-carried blaCMY and blaCTX-M genes, though it was negative for the blaTEM gene. Of the 35 isolates that harbored either extended-spectrum β-lactamase (ESBL) and/or AmpC β-lactamase genes, six strains (17.14%) were assigned to pathogenic phylogroup F and one to phylogroup E, whereas 28 (80%) isolates belonged to commensal phylogenetic groups.

Funder

Increasing the impact of excellence research on the capacity for innovation and technology transfer within USAMVB Timis, oara

Publisher

MDPI AG

Subject

Plant Science,Health Professions (miscellaneous),Health (social science),Microbiology,Food Science

Reference79 articles.

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2. World Health Organization (2022, November 24). Draft Global Action Plan on Antimicrobial Resistance WHA68.7, Available online: http://apps.who.int/gb/ebwha/pdf_files/WHA68/A68_20-en.pdf?ua¼1.

3. Meena, H.R., and Kumar, V. (2020). Livestock Health and Farming, IntechOpen.

4. Global trends in antimicrobial use in food animals;Brower;Proc. Natl. Acad. Sci. USA,2015

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