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Occurrence of extended spectrum β-lactamaseand AmpC-producing Escherichia coli in meat samples


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1. Arslan S., Eyi A.: Antimicrobial resistance and ESBL prevalence in Escherichia coli from retail meats. J Food Safety 2011, 31, 262-267.10.1111/j.1745-4565.2010.00295.x Search in Google Scholar

2. Ben Slama K., Jouini A., Ben Sallem R., Somalo S., Sáenz Y., Estepa V., Boudabous A., Torres C.: Prevalence of broad- spectrum cephalosporin resistant Escherichia coli in food samples in Tunisia and characterization of integrons and antimicrobial resistance mechanisms implicated. Int J Food Microbiol 2010, 137, 281-286.10.1016/j.ijfoodmicro.2009.12.00320031243 Search in Google Scholar

3. Blanc V., Mesa R., Saco M., Lavilla S., Prats G., Miro F., Navarro F., Cortes P., Llagostera M.: ESBL and plasmidic class C beta-lactamase-producing E. coli strains isolated from poultry, pig, and rabbit farms. Vet Microbiol 2006, 118, 299-304.10.1016/j.vetmic.2006.08.00216973308 Search in Google Scholar

4. Bortolaia V., Guardabassi L., Trevisani M., Bisgraad M., Venturi L., Bojesen A.: High diversity of extended spectrum beta- lactamases in Escherichia coli isolates from Italian broiler flocks. Antimicrob Agents Chemother 2010, 54, 1624-1626.10.1128/AAC.01361-09284938920100875 Search in Google Scholar

5. Brinas L., Moreno M., Zarazaga M., Purrero C., Saenz Y., Garcia M., Dominguez L., Torres C.: Detection of CMY-2, CTX-M-14 and SHV12 beta-lactamases in Escherichia coli fecal sample isolates from healthy chickens. Antimicrob Agents Chemother 2003, 47, 2056-2058.10.1128/AAC.47.6.2056-2058.200315583812760899 Search in Google Scholar

6. Dhanji H., Murphy N., Doumith M., Durmus S., Lee S., Hope R., Woodfrod N., Livermore D.: Cephalosporin resistance mechanisms in Escherichia coli isolated from raw chicken imported into the UK. J Antimicrob Chemother 2010, 65, 2534-2537.10.1093/jac/dkq37620889530 Search in Google Scholar

7. Dierikx C., van Essen-Zandbergen A., Veldman K., Smith H., Mevius D.: Increased detection of extended-spectrum beta- lactamase producing Salmonella enterica and Escherichia coli isolates from poultry. Vet Microbiol 2010, 145, 273-278.10.1016/j.vetmic.2010.03.01920395076 Search in Google Scholar

8. Doi Y., Paterson D., Egea E., Pascual A., Lopez-Cerero L., Navarro M., Adams-Haduch J., Qureshi Z., Sidjabad H., Rodriguez-Bano J.: Extended-spectrum and CMY-type beta- lactamase-producing Escherichia coli in clinical samples and retail meat from Pittsburgh, USA and Seville, Spain. Clin Microbiol Infect 2010, 16, 33-38.10.1111/j.1469-0691.2009.03001.x19681957 Search in Google Scholar

9. Duan R., Sit T., Wong S., Wong R., Chow K., Mak G., Yam W., Ng L., Yuen K., Ho P.: Escherichia coli producing CTX-M beta-lactamases in food animals in Hong Kong. Microb. Drug Resist 2006, 12, 145-148.10.1089/mdr.2006.12.14516922633 Search in Google Scholar

10. European Food Safety Authority (EFSA): Scientific opinion on the public health risks of bacterial strains producing extended- spectrum β-lactamases and/or Amp C β-lactamases in food and food producing animals. EFSA J 2011, 9, 2322.10.2903/j.efsa.2011.2322 Search in Google Scholar

11. Girlich D., Poirel L., Carattoli A., Kempf I., Lartigue M., Bertini A., Nordmann P.: Extended-spectrum beta-lactamase CTX-M-1 in Escherichia coli isolates from healthy poultry in France. Appl Environ Microbial 2007, 73, 4681-4685.10.1128/AEM.02491-06193282917513592 Search in Google Scholar

12. Hasman H., Mevius D., Veldman K., Olesen I., Aerstroup F.: Beta-lactamases among extended-spectrum beta-lactamases (ESBL)-resistant Salmonella from poultry, poultry products and human patients in the Netherlands. Antimicrob Agents Chemother 2005, 56, 115-121.10.1093/jac/dki19015941775 Search in Google Scholar

13. Jackoby G.: AmpC β-Lactamases. Clin Microbiol Rev 2009, 22, 161-182.10.1128/CMR.00036-08262063719136439 Search in Google Scholar

14. Jouini A., Ben Slama K., Sáenz Y., Klibi N., Costa D., Vinue L., Zarazaga M., Boudabous A., Torres C.: Detection of multiple- antimicrobial resistance and characterization of the implicated genes in Escherichia coli isolates from foods of animal origin in Tunis. J Food Protect 2009, 72, 1082-1088.10.4315/0362-028X-72.5.1082 Search in Google Scholar

15. Kolar M., Bardon J., Chroma M., Hricova K., Stosova T., Sauer P., Koukalova D.: ESBL and AmpC beta-lactamase-producing Enterobacteriaceae in poultry in the Czech Republic. Vet Med (Praha) 2010, 55, 119-124.10.17221/165/2009-VETMED Search in Google Scholar

16. Leinberger D., Grimm V., Rubtsova M., Schröppler J., Wichelhaus T., Knabbe C., Schmid R., Bachmann T.: Integrated detection of extended-spectrum-beta-lactam resistance by microarray based genotyping of TEM, SHV and CTX-M genes. J Clin Microbiol 2010, 48, 460-471.10.1128/JCM.00765-09281558520007393 Search in Google Scholar

17. Machado E., Coque T., Canton R., Sousa J., Peixe L.: Antibiotic resistance integrons and extended-spectrum beta-lactamases among Enterobacteriaceae isolates recovered from chickens and swine in Portugal. J Antimicrob Chemother 2008, 62, 296-302.10.1093/jac/dkn17918456652 Search in Google Scholar

18. Markiewicz Z., Kwiatkowski Z.: Bakterie antybiotyki i lekooporność. Państwowe Wydawnictwo Naukowe, Warszawa 2001, pp. 97-116. Search in Google Scholar

19. Mulvey M., Soule G., Boyd D., Demczuk W., Ahmed R., Multi- provincial Salmonella Typhimurium case control study group: characterization of the first extended-spectrum β-lactamase- producing Salmonella isolate identified in Canada. J Clin Microbiol 2003, 41, 460-462.10.1128/JCM.41.1.460-462.200314962812517894 Search in Google Scholar

20. Ojer-Usoz E., González D., Vitas A., Leiva J., Garcia-Jalón I., Febles-Casquero A., de la Soledad Escolano M.: Prevalence of extended-spectrum β-lactamase-producing Enterobacteriaceae in meat products sold in Navarra, Spain. Meat Sci 2013, 93, 316-321.10.1016/j.meatsci.2012.09.00923062714 Search in Google Scholar

21. Rishi H., Dhillon P., Clark J.: ESBL-s: A clear and present danger? Crit Care Res Pract 2012, 625170, 1-11.10.1155/2012/625170313506321766013 Search in Google Scholar

22. Seung-Hee R., Jip-Ho L., Sang-Honn P., Mi-Ok S., Sun-Hee P., Hyo-Won J., Geon-Yong P., Sung-Min Ch., Moo-Sang K., Young-Zoo Ch., Seong-Gee P., Young-Ki L.: Antimicrobial resistance profilers among Escherichia coli strains isolated from commercial and cooked foods. Internat J Food Microbiol 2012, 159, 263-266. Search in Google Scholar

23. Sheikh A., Checkley S., Avery B., Chalmers G., Bophaychuk V., Boerlin P., Reid-Smith R., Aslam M.: Antimicrobial resistance and resistance genes in Escherichia coli isolated from retail meat purchased in Alberta, Canada. Foodborne Pathol Dis 2012, 9, 625-631.10.1089/fpd.2011.107822730959 Search in Google Scholar

24. Sunde M., Norström M.: The prevalence of associations between and conjugal transfer of antibiotic resistance genes in Escherichia coli isolated from Norwegian meat and meat products. J. Antimicrob. Chemother. 2006, 58, 741-747. Search in Google Scholar

25. Tham J., Walder M., Melandr E., Odenholt I.: Prevalence of extended-spectrum beta-lactamase-producing bacteria in food. Infect Drug Resist 2012, 5, 143-147.10.2147/IDR.S34941347674923093909 Search in Google Scholar

26. Thomson K: Controversies about extended-spectrum and AmpC beta-lactamases. Emerg Infect Dis 2001, 7, 333-336.10.3201/eid0702.010238263171911294735 Search in Google Scholar

27. Van T., Chin J., Chapman T., Tran L., Coloe P.: Safety of raw meat and shellfish in Vietnam: an analysis of Escherichia coli isolates for antibiotic resistance and virulence genes. Int. J Food Microbiol 2008, 124, 217-223.10.1016/j.ijfoodmicro.2008.03.02918457892 Search in Google Scholar

28. Warren R., Ensor V., O’Neill P., Butler V., Taylor J., Nye K., Harvey M., Livermore D., Woodford N., Havkey P.: Imported chicken meat as a potential source of quinolone-resistant Escherichia coli producing extended-spectrum beta-lactamases in the UK. J Antimicrob Chemother 2008, 61, 504-508.10.1093/jac/dkm51718222958 Search in Google Scholar

29. Wasyl D., Hoszowski A., Zając M., Skarżyńska M.: Simple and efficient screening method for the detection of cephalosporin resistant Escherichia coli. Bull Vet Inst Pulawy 2010, 54, 151-157. Search in Google Scholar

30. Wasyl D., Hasman H., Cavaco L., Aerestrup F.: Prevalence and characterization of cephalosporin resistance in nonpathogenic Escherichia coli from food-producing animals slaughtered in Poland. Microb Drug Resist 2012, 18, 79-82.10.1089/mdr.2011.003321721933 Search in Google Scholar

31. Zhang C., Liu Y., Wang J.: Detection of ESBLs and antimicrobial susceptibility of Escherichia coli isolated in Henan, China. J Anim Vet Adv 2010, 9, 2030-2034.10.3923/javaa.2010.2030.2034 Search in Google Scholar

32. Zhao S., Blickenstaff K., Bodies-Jones S., Gaines S., Tong E., McDermott P.: Comparison of prevalence and antimicrobial resistance of Escherichia coli isolates from different retail meats in the United States, 2002 to 2008. Appl Environ Microbiol 2012, 78, 1701-1707. 10.1128/AEM.07522-11329814222247155 Search in Google Scholar

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Language:
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Journal Subjects:
Life Sciences, Molecular Biology, Microbiology and Virology, other, Medicine, Veterinary Medicine