Wyświetlanie pozycji 1-2 z 2

    • Azithromycin resistance in Escherichia coli and Salmonella from food-producing animals and meat in Europe 

      Ivanova, M.; Ovsepian, A.; Leekitcharoenphon, P.; Seyfarth, A.M.; Mordhorst, H.; Otani, S.; Koeberl-Jelovcan, S.; Milanov, M.; Kompes, G.; Liapi, M.; Černý, T.; Thougaard Vester, C.; Perrin-Guyomard, A.; Hammerl, J.A.; Grobbel, M.; Valkanou, E.; Jánosi, Sz.; Slowey, R.; Alba, P.; Carfora, V.; Avsejenko, J.; Pereckiene, A.; Claude, D.; Zerafa, R.; Veldman, K.T.; Boland, C.; Garcia-Graells, C.; Wattiau, P.; Butaye, P.; Zając, M.; Amaro, A.; Clemente, L.; Vaduva, A.M.; Romascu, L.M.; Milita, N.M.; Mojžišová, A.; Zdovc, I.; Zamora Escribano, M.J.; De Frutos Escobar, C.; Overesch, G.; Teale, Ch.; Loneragan, G.H.; Guerra, B.; Beloeil, P.A.; Brown, A.M.V.; Hendriksen, R.S.; Bortolaia, V.; Kjeldgaard, J.S. (Oxford Academic, 2024)
      ObjectivesTo characterize the genetic basis of azithromycin resistance in Escherichia coli and Salmonella collected within the EU harmonized antimicrobial resistance (AMR) surveillance programme in 2014–18 and the Danish ...
    • The European livestock resistome 

      Munk, P.; Yang, D.; Röder, T.; Maier, L.; Petersen, T. N.; Duarte, A. S. R.; Clausen, P. T. L.; Brinch, C.; Gompel, L. van; Luiken, R.; Wagenaar, J. A.; Schmitt, H.; Heederik, D. J. J.; Mevius, D. J.; Smit, L. A. M.; Graveland, H.; Gonzalez-Zorn, B.; Moyano, G.; Sanders, P.; Chauvin, C.; Battisti, A.; Dewulf, J.; Wadepohl, K.; Wasyl, D.; Skarżyńska, M.; Zając, M.; Pękala-Safińska, A.; Daskalov, H.; Stärk, K.; Aarestrup, F.M. (American Society for Microbiology, 2024)
      Understanding the occurrence, diversity, and drivers for antimicrobial resistance (AMR) is important to focus future control efforts. So far, almost all attempts to limit AMR in livestock have addressed antimicrobial ...