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The Effect of a Probiotic Containing Enterococcus faecium DSM 7134 on Redox and Biochemical Parameters in Chicken Blood Cover

The Effect of a Probiotic Containing Enterococcus faecium DSM 7134 on Redox and Biochemical Parameters in Chicken Blood

Open Access
|Oct 2017

References

  1. Aebi H. (1984). Catalase in vitro. Meth. Enzymol., 105: 121–126.
  2. Akerboom T.P., Sies H. (1981). Assay of glutathione, glutathione disulfide, and glutathione mixed disulfides in biological samples. Meth. Enzymol., 77: 373–382.
  3. Alonso-Alvarez C., Perez C., Velando A. (2007). Effects of acute exposure to heavy fuel oil from the prestige spill on a seabird. Aquat. Toxicol., 84: 103–110.
  4. Aluwong T., Kawu M., Raji M., Dzenda T., Govwang F., Sinkalu V., Ayo J. (2013). Effect of yeast probiotic on growth, antioxidant enzyme activities and malondialdehyde concentration of broiler chickens. Antioxidants, 2: 326–339.
  5. Arslan C. (2006). L-carnitine and its use as a feed additive in poultry feeding a review. Rev. Med. Vet., 157: 134–142.
  6. Audisio M.C., Oliver G., Apella M.C. (2000). Protective effect of Enterococcus faecium J96, a potential probiotic strain, on chicks infected with Salmonella pullorum. J. Food Protect., 63: 1333–1337.10.4315/0362-028X-63.10.1333
  7. Aw T.Y., Wiliams M.W., Gray L. (1992). Absorption and lymphatic transport of peroxidized lipids by rat small intestine in vivo: role of mucosal GSH. Am. J. Physiol., 262: 99–106.
  8. Babazadeh D., Vahdatpour T., Nikpiran H., Jafargholipour M., Vahdatpour S. (2011). Effects of probiotic, prebiotic and synbiotic intake on blood enzymes and performance of Japanese quails (Coturnix japonica). Indian J. Anim. Res., 81: 870–874.
  9. Benzie I.F.F., Strain J.J. (1996). The ferric reducing ability of plasma (FRAP) as a measure of “antioxidant power”: the FRAP assay. Anal. Biochem., 239: 70–76.
  10. Bessman S.P., Geiger P.J. (1981). Transport of energy in muscle: the phosphocreatine shuttle. Science, 211: 448–452.
  11. Capcarova M., Weiss J., Hrncar C., Kolesarova A., Pal G. (2010). Effect of Lactobacillus fermentum and Enterococcus faecium strains on internal milieu, antioxidant status and body weight of broiler chickens. J. Anim. Physiol. Anim. Nutr., 94: 215–224.
  12. Douglas D.N., Pu C., Lewis J., Bhat R., Anwar-Mohamed A., Logan M., Lund G., Addison W.R., Lehner R., Kneteman N.M. (2016). Oxidative stress attenuates lipid synthesis and increases mitochondrial fatty acid oxidation in hepatoma cells infected with hepatitis C virus. J. Biol. Chem, 22: 1974–1990.10.1074/jbc.M115.674861
  13. El-Sissi A., Mohamed S. (2011). Impact of symbiotic on the immune response of broiler chickens against NDV and IBV vaccines. GJBBR, 6: 186–191.
  14. Fki I., Sahnoun Z., Sayadi S. (2007). Hypocholesterolemic effects of phenolic extracts and purified hydroxytyrosol recovered from olive mill wastewater in rats fed a cholesterol-rich diet. J. Agric. Food Chem., 7: 624–631.
  15. Gay C., Gębicki J.M. (2002). Perchloric acid enhances sensitivity and reproducibility of the ferricxylenol orange peroxide assay. Anal. Biochem., 304: 42–46.
  16. Harr K.E. (2002). Clinical chemistry of companion avian species: A review. Vet. Clin. Pathol., 31: 140–151.10.1111/j.1939-165X.2002.tb00295.x
  17. Juśkiewicz J., Semaskaite A., Zduńczyk Z., Wróblewska M., Gružauskas R., Juśkiewicz M. (2007). Minor effect of the dietary combination of probiotic Pediococcus acidilactici with fructooligosaccharides or polysaccharidases on beneficial changes in the cecum of rats. Nutr. Res., 27: 133–139.10.1016/j.nutres.2007.01.005
  18. Kogan G., Pajtinka M., Babincova M., Miadokova E., Rauko P., Slamenova D. (2008). Yeast cell wall polysaccharides as antioxidants and antimutagens: can they fight cancer? Neoplasma, 55: 387–393.
  19. Kullisaar T., Zilmer M., Mikelsaar M. (2002). Two antioxidative lactobacilli strains as promising probiotics. Int. J. Food Microbiol., 72: 215–224.10.1016/S0168-1605(01)00674-2
  20. Kumar M., Kumar A., Nagpal R., Mohania D., Behare P., Verma V., Kumar P., Poddar D., Aggarwal P.K., Henry C.J., Jain S., Yadav H. (2010). Cancer-preventing attributes of probiotics: An update. Int. J. Food Sci. Nutr., 61: 473−496.10.3109/0963748090345597120187714
  21. Levkut M., Revajová V., Lauková A., Ševcíková Z., Spišáková V., Faixová Z., Levkutová M., Strompfová V., Pistl J., Levkut M. (2012). Leukocytic responses and intestinal mucin dynamics of broilers protected with Enterococcus faecium EF 55 and challenged with Salmonella enteritidis. Res. Vet. Sci., 93: 195–201.10.1016/j.rvsc.2011.06.02121767856
  22. Li W.F., Huang Q., Li Y.L., Rajput I.R., Huang Y., Hu C.H. (2012). Induction of probiotic strain Enterococcus faecium EF1 on the production of cytokines, superoxide anion and prostaglandin E2 in a macrophage cell line. Pak. Vet. J., 32: 530–534.
  23. Liu X., Zhang S., Shan X., Christie P. (2007). Combined toxicity of cadmium and arsenate to wheat seedlings and plant uptake and antioxidative enzyme responses to cadmium and arsenate cocontamination. Ecotox. Environ. Safe., 68: 305–313.10.1016/j.ecoenv.2006.11.00117239437
  24. Luo J., Zheng A., Meng K., Chang W., Bai Y., Li K. (2013). Proteome changes in the intestinal mucosa of broiler (Gallus gallus) activated by probiotic Enterococcus faecium. J. Proteomics, 91: 226–241.10.1016/j.jprot.2013.07.01723899589
  25. Łukaszewicz-Hussain A., Moniuszko-Jakoniuk J. (2004). Liver catalase, glutathione peroxidase and reductase activity, reduced glutathione and hydrogen peroxide levels in acute intoxication with chlorfenvinphos, an organophosphate insecticide. Pol. J. Environ. Stud., 13: 303–309.
  26. Mikulski D., Jankowski J., Naczmanski J., Mikulska M., Demey V. (2012). Effects of dietary probiotic (Pediococcus acidilactici) supplementation on performance, nutrient digestibility, egg traits, egg yolk cholesterol, and fatty acid profile in laying hens. Poultry Sci., 91: 2691–2700.10.3382/ps.2012-0237022991559
  27. Milinkovic-Tur S., Stojevic Z., Pirsljin J., Zdelar-Tuk M., Poljicak-Milas N., Beer Ljubic B., Gradinski-Vrbanac B. (2007). Effect of fasting and refeeding on the antioxidant system in cockerels and pullets. Acta Vet. Hung., 55: 181–189.10.1556/AVet.55.2007.2.317555282
  28. Misra H.P., Fridovich I. (1972). The role of superoxide anion in the autooxidation of epinephrine and a simple assay for superoxide dismutase. J. Biol. Chem., 247: 3170–3175.
  29. Nutrient Requirements for Poultry (2005). Fourth edition revised and enlarged. Collective work (A. Rutkowski – co-editor), PAN IFiZZ, Jabłonna, Poland.
  30. Ognik K., Krauze M. (2012). Dietary supplementation of mannanoligosaccharides to turkey hens on their growth performance and antioxidant status in the blood. S. Afr. J. Anim. Sci., 42: 379–388.
  31. Ognik K., Wertelecki T. (2012). Effect of different vitamin E sources and levels on selected oxidative status indices in blood and tissues as well as on rearing performance of slaughter turkey hens. Poultry Sci., 21: 259–271.
  32. Ognik K., Krauze M. (2016). The potential for using enzymatic assays to assess the health of turkeys. Worlds Poultry Sci. J., 72: 535–550.
  33. Ognik K., Czech A., Stachyra K. (2013). Effect of a natural versus a synthetic antioxidant, and sex and age on the redox profile in the blood of growing turkeys. S. Afr. J. Anim. Sci., 43: 473–481.
  34. Ognik K., Cholewińska E., Sembratowicz I., Grela E., Czech A. (2016). The potential of using plant antioxidants to stimulate antioxidant mechanisms in poultry. Worlds Poultry Sci. J., 72: 291–298.
  35. Omaye S.T., Tumbull J.D.H., Sauberlich E. (1979). Selected methods for determination of ascorbic acid in animal cells, tissues and fluids. Meth. Enzymol., 62: 3–11.
  36. Rajput I.R., Li W.F. (2012). Potential role of probiotics in mechanism of intestinal immunity. Pak. Vet. J., 32: 303–308.
  37. Rajput I.R., Li Y.L., Xu X., Huang Y., Zhi W.C., Yu D.Y., Li W. (2013). Supplementary effects of Saccharomyces boulardii and Bacillus subtilis B10 on digestive enzyme activities, antioxidation capacity and blood homeostasis in broiler. IJABE, 15: 231–237.
  38. Russel J.R., Dun-Xian T., Carmen N., Gitto O.E. (2000). Actions of melatonin in the reduction of oxidative stress. J. Biomed. Sci., 7: 444–458.
  39. Salih M., Smith D.M., Price J.F., Dawson L.E. (1987). Modified extraction 2-thiobarbituric acid method for measuring lipid oxidation in poultry. Poultry Sci., 66: 1483–1488.10.3382/ps.06614833684874
  40. Samli H.E., Senkoylu N., Koc F., Kanter M., Agma A. (2007). Effects of Enterococcus faecium and dried whey on broiler performance, gut histomorphology and intestinal microbiota. Arch. Anim. Nutr., 61: 42–49.10.1080/1745039060110665517361947
  41. Samli H.E., Dezcan S., Koc F., Ozduven M.L., Okur A.A., Senkoylu N. (2010). Effects of Enterococcus faecium supplementation and floor type on performance, morphology of erythrocytes and intestinal microbiota in broiler chickens. Brit. Poultry Sci., 51: 564–568.10.1080/00071668.2010.50724120924852
  42. Sobczak A., Kozłowski K. (2015). The effect of a probiotic preparation containing Bacillus subtilis ATCC PTA-6737 on egg production and physiological parameters of laying hens. Ann. Anim. Sci., 15: 711–723.
  43. Stancu C.S., Toma L., Sima A.V. (2012). Dual role of lipoproteins in endothelial cell dysfunction in atherosclerosis. Cell Tissue. Res., 349: 433–446.
  44. Tsimikas S., Miller Y.I. (2011). Oxidative modification of lipoproteins: mechanisms, role in inflammation and potential clinical applications in cardiovascular disease. Curr. Pharm. Des., 17: 27–37.
  45. Verago J.L., Grassi-Kassisse D.M., Spadari-Bratfisch R.C. (2001). Metabolic markers following beta-adrenoceptor agonist infusion in footshock-stressed rats. Braz. J. Med. Biol. Res., 34: 1197–1207.10.1590/S0100-879X2001000900014
  46. Zhao X., Guo Y., Guo S., Tan J. (2013). Effects of Clostridium butyricum and Enterococcus faecium on growth performance, lipid metabolism, and cecal microbiota of broiler chickens. Appl. Microbiol. Biotechnol., 97: 6477–6488.10.1007/s00253-013-4970-223666481
  47. Zheng A., Luo J., Meng K., Li J., Zhang S., Li K. (2014). Proteome changes underpin improved meat quality and yield of chickens (Gallus gallus) fed the probiotic Enterococcus faecium. BMC Genomics, 15: 1167–1181.10.1186/1471-2164-15-1167432594825532559
  48. Zheng A., Luo J., Meng K., Li J., Bryden W., Chang W., Zhang S., Wang L., Liu G., Yao B. (2016). Probiotic (Enterococcus faecium) induced responses of the hepatic proteome improves metabolic efficiency of broiler chickens (Gallus gallus). BMC Genomics, DOI: 10.1186/S12864-016-2371-5.10.1186/S12864-016-2371-5
DOI: https://doi.org/10.1515/aoas-2016-0097 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Page range: 1075 - 1088
Submitted on: Oct 28, 2016
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Accepted on: Feb 22, 2017
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Published on: Oct 27, 2017
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2017 Katarzyna Ognik, Magdalena Krauze, Ewelina Cholewińska, Katarzyna Abramowicz, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.