Have a personal or library account? Click to login

16. Effect of Diet Supplemented with Antioxidants (Selenium, Copper, Vitamins E and C) on Antioxidant Status and Ejaculate Quality of Breeding Boars

Open Access
|May 2016

References

  1. Echeverría-Alonzo S., Santos-Ricalde R., Centurión- Castro F., Ake- López R., Alfaro-Gamboa M., Rodríguez-Buenfil J. (2009). Effects of dietary selenium and vitamin Eon semen quality and sperm morphology of young boars during warm and fresh season. J. Anim. Vet. Adv., 8: 2311-2317.
  2. Gao J., Koshio S., Ishikawa M., Yokoyama S., Mamauag R.E.P. (2014). Interactive effects of vitamin C and E supplementation on growth performance, fatty acid composition and reduction of oxidative stress in juvenile Japanese flounder Paralichthys olivaceus fed dietary oxidized fish oil. Aquaculture, 422: 84-9010.1016/j.aquaculture.2013.11.031
  3. Hong Y.L., Yeh S.L., Chang C.Y., Hu M.L. (2000). Total plasma malondialdehyde levels in 16 Taiwanese college students determined by various thiobarbituric acid tests and an improved highperformance liquid chromatography-based method. Clin. Biochem., 33: 619-625.
  4. Horký P. (2014). Influence of increased dietary selenium on glutathione peroxidase activity and glutathione concentration in erythrocytes of lactating sows. Ann. Anim. Sci., 14: 869-882.
  5. Horký P., Cerkal R. (2014). Effect of fungicidal treatment on digestibility of mycotoxins in vitro. Potravinarstvo, 8: 328-332.
  6. Horký P., Jancikova P., Sochor J., Hynek D., Chavis G.J., Ruttkay- Nedecky B., Carnei N., Zitka O., Zeman L., Adam V., Kizek R. (2012). Effect of organic and inorganic form of selenium on antioxidant status of breeding boars ejaculate revealed by electrochemistry. Int. J. Electrochem. Sci., 7: 9643-9657.
  7. Horký P., Tmejova K., Kensova R., Cernei N., Kudr J., Ruttkay- Nedecky B., Sa - pakova E., Adam V., Kizek R. (2015). Effect of heat stress on the antioxidant activity of boar ejaculate revealed by spectroscopic and electrochemical methods. Int. J. Electrochem. Sci., 8: 6610-6626
  8. Hosmanova R., Dousa M. (2007). HPLCdetermination of vitamin Ein feed materials, compounded feeds and foods. Chem. Listy, 101: 578-583.
  9. Jankowiak D., Pilarczyk R., Drozd R., Pilarczyk B., Tomza- Marciniak A., Wysocka G., Rząd I., Drozd A. Kuba J., (2015). Activity of antioxidant enzymes in the liver of wild boars (Sus scrofa) fromaselenium-deficient area depending on sex, age, and season of the year. Turk. J. Biol., 39, p. 129.
  10. King G.J., Macpherson J.W. (1973). Acomparison of two methods for boar semen collection. J. Anim. Sci., 36: 563-565.
  11. Kołodziej A., Jacyno E. (2005). Effect of selenium and vitamin Esupplementation on reproductive performance of young boars. Arch. Tierzucht, 48: 68-75.
  12. Lasota B., Blaszczyk B., Seremak B., Udala J. (2004). Selenium status and GSH-Px activity in semen and blood of boars at different ages used for artificial insemination. Rep. Dom. Anim., 39: 309-314.
  13. Lei T.A., Marshall W.D. (1995). Selenium speciation by high-performance liquid-chromatography with online detection atomic-absorbtion spectrometry. Appl. Organochem., 9: 149-158.
  14. Lovercamp K.W., Stewart K.R., Lin X., Flowers W.L., (2013). Effect of dietary selenium on boar sperm quality. Anim. Reprod. Sci., 138: 268-275.
  15. Marin-Guzman J., Mahan D.C., Chung Y.K., Pate J.L., Pope W.F. (1997). Effects of dietary selenium and vitamin Eon boar performance and tissue responses, semen quality, and subsequent fertilization rates in mature gilts. J. Anim. Sci., 75: 2994-3003.
  16. Martins S.M., De Andrade A.F.C., Zaffalon F.G., Parazzi L.J., Bressan F.F., Pugi - ne S.M.P., Melo M.P., Chiaratti M.R., Marino C.T., Afonso E.R., Moretti A.S., Arruda R.P. (2014). Organic selenium increases PHGPx, but does not affect quality sperm in raw boar semen. Livest. Sci., 164: 175-178.
  17. Morelle K., Lejeune P. (2015). Seasonal variations of wild boar Sus scrofa distribution in agricultural landscapes:aspecies distribution modelling approach. Eur. J. Wildlife Res., 61: 45-56.
  18. Nevrkla P., Čechová M., Hadaš Z. (2014). Use of repopulation for optimizing sow reproductive performance and piglet loss. Acta Vet. Brno, 83: 321-325.
  19. Rakshit S., Chandrasekar B.S., Saha B., Victor E.S., Majumdar S., Nandi D. (2014). Interferon-gamma induced cell death: Regulation and contributions of nitric oxide, c Jun N-terminal kinase, reactive oxygen species and peroxynitrite. Biochim. Biophys. Acta, 1843: 2645-2661.
  20. Rudenko A.O., Kartsova L.A. (2010). Determination of water-soluble vitamin Band vitamin C in combined feed, premixes, and biologically active supplements by reversed-phase HPLC. J. Anal. Chem., 65: 71-76.
  21. Sochor J., Ryvolova M., Krystofova O., Salas P., Hubalek J., Adam V., Trnkova L., Havel L., Beklova M., Zehnalek J., Provaznik I., Kizek R. (2010). Fully automated spectrometric protocols for determination of antioxidant activity: advantages and disadvantages. Molecules, 15: 8618-8640.
  22. Surai P.F., Fisinin V.I. (2015). Selenium in pig nutrition and reproduction: Boars and semen quality - Areview. Asian-Austral. J. Anim. Sci., 28: 730-736.
DOI: https://doi.org/10.1515/aoas-2015-0085 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Page range: 521 - 532
Submitted on: Aug 10, 2015
Accepted on: Dec 10, 2015
Published on: May 6, 2016
Published by: National Research Institute of Animal Production
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Pavel Horký, Jiri Skladanka, Pavel Nevrkla, Petr Slama, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.