Tavuk etinden izole edilen Salmonella suşlarında ESBL potansiyeli ve çoklu ilaç direnci
ECVPH Conference & AGM 2026- Leveraging AI for Veterinary Public Health, Munich, Almanya, 3 - 04 Eylül 2026, ss.49, (Özet Bildiri)
- Yayın Türü: Bildiri / Özet Bildiri
- Basıldığı Şehir: Munich
- Basıldığı Ülke: Almanya
- Sayfa Sayıları: ss.49
- İstanbul Üniversitesi-Cerrahpaşa Adresli: Evet
Özet
- Background: Salmonella, a major foodborne pathogen, poses a threat to
global public health due to its role in the spread of antibiotic
resistance. This study aimed to investigate the presence, genetic
diversity, and resistance profiles of Salmonella in chicken meat, addressing
the inseparable link among animal-derived foods, humans, and the
environment within the framework of the “One Health” concept.
- Methods: A total of 210 raw chicken meat samples collected
from retail outlets across Istanbul were analyzed in accordance with ISO
6579-1. The isolated strains were confirmed and serotyped using PCR,
agglutination, and Sanger sequencing. Antibiotic susceptibilities were
determined using disk diffusion and E-test methods in accordance with
EUCAST and CLSI standards, while resistance genes were investigated using
PCR.
Results: Salmonella was isolated from 6.2% of the samples (n=13); the predominant serotype was S. Infantis (84.6%), followed by S. Enteritidis (7.7%) and S. Virchow (7.7%). In the disk diffusion test, multidrug resistance was identified in 84.6% of the strains. According to E-test results, the highest resistance was observed against tetracycline at 84.6%. The double-disk synergy test confirmed that 38% of the strains phenotypically produced Extended-Spectrum Beta-Lactamases (ESBL). Genetic analyses identified the resistance genes blaTEM (30.7%), blaCTX-M group 9 (30%), and blaCTX-M group 1 (7.7%). No colistin or carbapenem resistance genes were detected.
Conclusions: This pioneering study has revealed that retail chicken meat poses a serious public health risk and serves as a reservoir for the spread of potential ESBL-producing multidrug-resistant Salmonella strains. It is clear that multidisciplinary surveillance studies based on the One Health approach are of vital importance for limiting the uncontrolled use of antibiotics in animal production and preventing zoonotic risks.