Nitrofuran resistance in Salmonella enterica isolated from meat for human consumption
- Sandra Martínez-Puchol,
- ,
- Lidia Ruiz-Roldán,
- Laura Laureano-Adame,
- Alfredo Corujo,
- Theresa J. Ochoa
- Universitat de Barcelona,
- ,
- Universidad Científica del Sur,
- Nutreco PRC,
- School of Public Health, University of Texas,
- Universidad Peruana Cayetano Heredia, Instituto de Medicina Tropical Alexander von Humboldt
Open access
Publication Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 99-103 (5 pages)Journal (Volume, Issue Number)
Revista Peruana de Medicina Experimental y Salud Publica (Volume 37, Issue 1)Publication milestones
- Published - 2020
Publication status
ISSN
1726-4634Publication IDs
- Scopus: 85085683978
- PubMed: 32520201
Abstract
The mechanisms of resistance to nitrofurans from 18 meat samples with Salmonella enterica (chicken: 15; beef: 2; pork: 1) collected in Lima (Peru) were analyzed. The isolates were serotyped and the susceptibility levels to furazolidone and nitrofurantoin [with and without the efflux pump inhibitor Phenyl-Arginine-β-naphthylamide (PAβN)], the presence of mutations in the snrA and cnr genes and the transferability of resistance by conjugation were established. Fifteen samples with S. infantis (13 from chicken samples), 2 with S. enteritidis and 1 with S. anatum were identified. All isolates except the S. anatum were resistant to both nitrofurans showing MICs (minimum inhibitory concentration) of furazolidone and nitrofurantoin of 32-64 μg/mL and 128-256 μg/mL, respectively. The addition of PAßN had no effect on the MIC levels. All nitrofuran-resistant isolates showed amino acid codon alterations at both snrA and cnr (S. infantis: snrA STOP-151; cnr STOP-137; S. enteritidis: snrA STOP-180; cnr STOP-179). No transferable mechanisms of nitrofuran resistance were detected.
Funding Details
Publication metrics
Metrics
PlumX, opens in new tab
Sustainable Development Goals
- SDG 3 Good Health and Well
