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Alternatives to in-feed antibiotics and their impact on the safety of animal products

Alternatives to in-feed antibiotics and their impact on the safety of animal products. Eva Skřivanová University of Life Sciences in Prague, Czech Republic skrivanovae@af.czu.cz. ANTIBIOTICS. Penicillin: A. Fleming, 1929 First „Clinical trial“ 29. 11. 1942

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Alternatives to in-feed antibiotics and their impact on the safety of animal products

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  1. Alternatives to in-feed antibiotics and their impact on the safety of animal products Eva Skřivanová University of Life Sciences in Prague, Czech Republic skrivanovae@af.czu.cz

  2. ANTIBIOTICS • Penicillin: A. Fleming, 1929 • First „Clinical trial“ • 29. 11. 1942 • The most destructive fire accident in USA since 1903 • Penicillin has been given to patients with burn wounds • Better skin grafts acceptance - prevention of infection in burned patients ans its spreading to their system – the best results achieved so far • „Miracle drug“ Levy, 2002

  3. ANTIBIOTICS „There may be a danger, though, inunderdosage. It is not difficult to make microbes resistant to penicillin in the laboratory by exposing them to concentrations not sufficient to kill them,and the same thing has occasionally happened in the body. “ A. Fleming, Nobel Lecture, 1945

  4. ATB resistance, Europe

  5. ATB resistance, Europe

  6. Antibiotics in animal nutrition • Preventionof GIT infections (mainlyafterweaning) • Loweringofthe risk ofcontaminationof animal products • Productiontraitsenhancement

  7. Antibiotics in animal nutrition • Preventionof GIT infections (mainlyafterweaning) • Loweringofthe risk ofcontamination of animal products • Productiontraitsenhancement FEED SUPPLEMENTS

  8. Antibiotics in animal nutrition Worldwidesince 50-ies ofthe last century Resistance: reduction in their use January 2006: restricted in EU (based on the EU Regulation no. 1831/2003

  9. Antibiotics in animal nutrition December 2013

  10. In-feed ATB restriction: • ↓ production • ↓ health (GIT infectionsaroundweaning in particuar) • ↑ risk ofbacterialcontaminationof animal products • ↑ costs

  11. Alternatives to in-feed ATB • Probiotics, prebiotics • Bacteriocins • Enzymes • Plant extracts, essential oils • Antibodies • Organic acids

  12. Organic acids • Feed & food preservatives • Animal nutrition: • Growth & performance enhancers • Antibacterial properties

  13. Organic acids • Feed & food preservatives • Animal nutrition: • Growth & performance enhancers • Antibacterial properties MCFA (C8:0 – C12:0)

  14. Antibacterial effect of fatty acids in vivo • Experimental infection of chickens with C. jejuni • Caprylic acid (C8:0) • Concentrations 0.35 % - 1.4 % • Last week of the fattening period (7 days or 3 days)

  15. Antibacterial effect of fatty acidsin vivo S. de los Santos a kol., Poultry Science 2009

  16. Antibacterial effect of fatty acids in vivo • Cuphea lanceolata a C. ignea seeds • Rich in MCFA • 5 % addition to feed • Combined with exogenous lipase • The effect on performance and GIT microflora • Improvement was not statistically signifficant

  17. Antibacterial effect of fatty acidsin vivo: IAS Prague • Experimentalinfectionsofrabbits& chickens • Effectof MCFA on GIT microbiota • Fieldexperiments

  18. Antibacterial effect of fatty acidsin vivo: IAS Prague • Experimentalinfectionsofrabbits& chickens • Effectof MCFA on GIT microbiota • Fieldexperiments

  19. I. Experimental infections

  20. 88 broilerHypulsrabbits, weanedat 35D • Individualcages • Negative control • Positive control • 0.5 % C8 FA • 1 % C8 + C10 TAG • Bacterialshedding • Performance • Health status E. coli O103

  21. The effect of C8 and Akomed R on E. coli shedding in terms of experimental infection of broiler rabbits b b b c c c c b ab c b Negative control Positive control Treatment I (C8) Treatment II (Akomed R) c a a a a Days post-infection abcColumns with a different superscript are significantly different within the group (p < 0,05) Skřivanová et al., Veterinary Microbiology 2008

  22. I. Experimental infections

  23. The effect of C8 and Akomed R on E. coli shedding in terms of experimental infection of broiler rabbits b b b b b c c c b c c c c c Negative control Positive control Treatment I (C8) Treatment II (Akomed R) ab a ab a a a a a a a abcColumns with a different superscript are significantly different within the group (p < 0,05) Skřivanová et al., Veterinary Microbiology 2009

  24. I. Experimental infections

  25. I. Experimental infections • 48 broiler chickens • Induvidual cages • Negative control • Positive control • C8 + C10 free, 0.5 % • C8 + C10 coated, 0.5 % • Bacterial shedding • Performance • Health status Campylobacter jejuni

  26. Experimental timeline

  27. The effect of free and coated MCFA on C. jejuni shedding in terms of experimental infection of broiler chickens

  28. Salmonella infection + surface treatment of chilled broiler chicken 2014

  29. Salmonellaentericavar. Enteritidis • Dietarysupplementationof C8:0 • 0.25 % and 0.5 % • reductionofsalmonellas in crop and caecum • Surfacetreatmentofchilledchickencarcasses • 0.125 % and 0.25 % • reducedsalmonellas on a surface by 1 – 2 Log10 CFU/g of skin • sensory traits

  30. Fatty acids in animal nutrition • Effective in young animals or during the entire fattening • Prevention of GIT infections • Lower bacterial shedding • Lower risk of contamination of animal products • Can be used as a surface-treatment (with some limitations) • Broiler rabbits, chickens, pigs

  31. Thank you for your attention!

  32. Consumption of veterinary chemotherapeuticals in the Czech Republic: ANTIBIOTICS (Hera et al., 2009)

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