Vet Med - Czech, 2011, 56(2):63-74 | DOI: 10.17221/1581-VETMED

Impact of long-term supplementation of zinc and selenium on their content in blood and hair in goats

L. Pavlata, M. Chomat, A. Pechova, L. Misurova, R. Dvorak
Faculty of Veterinary Medicine, University of Veterinary and Pharmaceutical Sciences, Brno, Czech Republic

This paper evaluates the impact of long-term supplementation of different forms of zinc (Zn) and selenium (Se) on the content of these substances in the blood and hair of goats. Two analogous supplementation experiments were performed. 37 goats divided into four groups were used in the first trial with the Zn supplementation. Group A (n = 10) was a control group (with no Zn administered). A further three groups (B, C, D) were supplemented with Zn in various forms. Group B (n = 9) with zinc oxide, Group C (n = 9) with zinc lactate and Group D (n = 9) with zinc chelate. The second trial with Se supplementation was carried out on 20 goats divided into four groups. Group E (n = 5) was a control group. The other three groups were administered Se. Group F (n = 5) was supplied with a selenium lactate-protein complex, Group G (n = 5) with sodium selenite and Group H (n = 5) with selenium yeast. Three months later blood and hair samples were taken from all animals and Zn and Se concentrations were determined in whole blood, plasma, and hair. Glutathione peroxidase (GSH-Px) activity was determined in the Se supplementation trial group. At the end of the trial the Zn concentrations in plasma and whole blood were without major differences between the groups. The plasma concentration of Zn did not increase from the initial value at the start of the trial. In hair the average concentration of Zn was 95.2-100.0 mg/kgin all groups. No conclusive relation was confirmed between the values of Zn in hair and its concentration in blood. The Se concentration in whole blood (µg/l) at the end of trial in supplemented groups (F - 188.8 ± 24.6; G - 197.2 ± 10.9; H - 190.1 ± 26.3) was significantly higher (P < 0.01) than in the control group (E - 103.1 ± 23.5). Similarly, the activity of GSH-Px (µkat/l) was significantly higher in all supplemented groups (F - 872.3 ± 94.8; G - 659.5 ± 176.4; H - 839.8 ± 150.8) than in the control group (E - 379.1 ± 63.5). Se content in hair (µg/kg) was higher also in all trial groups (F - 242.3 ± 41.5; G - 200.5 ± 46.9; H - 270.0 ± 106.8) than in the control group (E - 174.7 ± 38.0). However, it was significantly (P < 0.05) higher only in Group F. A conclusive correlation was identified between the Se concentration in whole blood and its content in hair (r = 0.54; P < 0.05; n = 20). Based on the results it can be concluded that none of the supplemented forms of Zn increased its concentration in blood, plasma and hair. On the other hand, the administration of Se led to an increase in the Se concentration in blood, increased the activity of GSH-Px in whole blood and the Se content in hair. Based on the proven correlation and regression relation between the Se concentration in blood and its content in hair, hair can be considered as a suitable material for the diagnosis of long-term Se status in goats. Goats with sufficient Se status are those that have more than 160 µg/kg of Se in hair dry weight.

Keywords: trace element; glutathione peroxidase; organic selenium; inorganic selenium; organic zinc; inorganic zinc; ruminants; metabolism

Published: February 28, 2011  Show citation

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Pavlata L, Chomat M, Pechova A, Misurova L, Dvorak R. Impact of long-term supplementation of zinc and selenium on their content in blood and hair in goats. Vet Med - Czech. 2011;56(2):63-74. doi: 10.17221/1581-VETMED.
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References

  1. Ashton K, Hooper L, Harvey LJ, Hurst R, Casgrain A, Fairweather-Tait SJ (2009): Methods of assessment of selenium status in humans: A systematic review. American Journal of Clinical Nutrition 89, 2025-2039. Go to original source... Go to PubMed...
  2. Bass DA, Hickok D, Quig D, Urek K (2001): Trace element analysis in hair: factors determinig accuracy, precision, and reliability - statistical data. Alternative Medicine Review 6, 472-481. Go to PubMed...
  3. Beeson WM, Perry TW, Zurcher TD (1977): Effect of supplemental zinc on growth and on hair and blood serum levels of beef cattle. Journal of Animal Science 45, 160-174. Go to original source... Go to PubMed...
  4. Bickhardt K, Ganter M, Sallmann P, Fuhrmann H (1999): Investigation on manifestation of vitamin E and selen deficiency in sheep and goat. Deutsche Tierarztliche Wochenschrift 106, 242-247. Go to PubMed...
  5. Bires J (1986): Therapy of zinc deficiency in ruminants and swine by parenteral application of zinc (in Slovak). [PhD thesis.] University of Veterinary Mdicine, Kosice, 132 pp.
  6. Combs DK (1987): Hair analysis as an indicator of mineral status of livestock. Journal of Animal Science 65, 1753-1758. Go to original source... Go to PubMed...
  7. Combs DK, Goodrich RD, Meiske JC (1982): Mineral concentrations in hair as indicators of mineral status: A review. Journal of Animal Science 54, 391-398. Go to original source... Go to PubMed...
  8. Gabryszuk M, Sloniewski K, Sakowski T (2008): Macroand microelements in milk and hair of cows from conventional vs. organic farms. Animal Science Papers and Reports 26, 199-209.
  9. Gabryszuk M, Sloniewski K, Metera E, Sakowski T (2010): Content of mineral elements in milk and hair of cows from organic farms. Journal of Elementology 15, 259-267.
  10. Gellein K, Lierhagen S, Brevik PS, Teigen M, Kaur P, Singh T, Flaten TP, Syvarsen T (2008): Trace element profiles in single standard soft human hair determined by HR-ICP-MS. Biological Trace Element Research 123, 250-260. Go to original source... Go to PubMed...
  11. Hac E, Krechniak J, Szyszko M (2002): Selenium levels in human plasma and hair in northern Poland. Biological Trace Element Research 85, 277-285. Go to original source... Go to PubMed...
  12. Ilhan A, Uz E, Kali S, Var A, Akyol O (2003): Serum and hairs trace element levels in patients with epilepsy and healthy subjects: does the antiepileptic therapy affect the element concentrations of hair. European Journal of Neurology 6, 705-709. Go to original source... Go to PubMed...
  13. Klevay LM, Christopherson DM, Shuler TR (2004): Hair as a biopsy material: trace element data on one man over two decades. European Journal of Clinical Nutrition 58, 1359-1364. Go to original source... Go to PubMed...
  14. Krys S, Lokajova E, Podhorsky A, Pavlata L (2009): Microelement supplementation in dairy cows by mineral lick. Acta Veterinaria Brno 78, 29-36. Go to original source...
  15. Kursa J, Kroupova V (1975): The selenium content in cattle hair in incidence areas of nutritional muscular dystrophy (in Czech). Veterinarni Medicina 20, 75-81.
  16. Lowe NM, Fekete K, Decsi T (2009): Methods of assessment of zinc status in humans: a systematic review. American Journal of Clinical Nutrition 89, 1953- 1959. Go to original source... Go to PubMed...
  17. Ludvikova E, Pavlata L, Vyskocil M, Jahn P (2005): Selenium status of horses in the Czech Republic. Acta Veterinaria Brno 74, 369-375. Go to original source...
  18. Mala S, Kovaru F, Misurova L, Pavlata L, Dvorak R (2009): Influence of selenium on innate response in kids. Folia Mikrobiologica 54, 545-548. Go to original source... Go to PubMed...
  19. Malbe M, Klaassen M, Fang W, Myllys V, Vikerpuur M, Nyholm K, Sankari S, Suuranta K, Sandholm M (1995): Comparisons of selenite and selenium yeast feed supplements on Se-incorporation, mastitis and leukocyte function in Se-defficient dairy cows. Zentralblatt fur Veterinarmedizin, Reihe A 42, 111-121. Go to original source... Go to PubMed...
  20. Miller WJ (1970): Zinc nutrition of cattle: A review. Journal of Dairy Science 53, 1123-1132. Go to original source... Go to PubMed...
  21. Miller WJ, Blackmon DM, Gentry RP, Powell GW, Perkins HF (1966): Influence of zinc deficiency on zinc and dry matter content of ruminant tissues and on excretion of zinc. Journal of Daiy Science 49, 1446-1453. Go to original source... Go to PubMed...
  22. Misurova L, Pavlata L, Pechova A, Dvorak R (2009a): Effect of a long-term peroral supplementation with sodium selenite and selenium lactate-protein complex on selenium status in goats and their kids. Veterinarni Medicina 54, 324-332. Go to original source...
  23. Misurova L, Pavlata L, Pechova A, Dvorak R (2009b): Selenium metabolism in goats - maternal transfer of selenium to newborn kids. Veterinarni Medicina 54, 125-130. Go to original source...
  24. Ortman K, Pehrson B (1999): Effect of selenate as a feed supplement to dairy cows in comparison to selenite and selenium yeast. Journal of Animal Science 77, 3365-3370. Go to original source... Go to PubMed...
  25. Ortman K, Andersson R, Holst H (1999): The influence of supplements of selenite, selenate and selenium yeast on the selenium status of dairy heifers. Acta Veterinaria Scandinavica 40, 23-34. Go to original source... Go to PubMed...
  26. Paglia DE, Valentine WN (1967): Studies on the qantitative and qualitative characteization of erythrocyte glutathione peroxidase. Journal of Laboratory Clinical Medicine 70, 158-169.
  27. Pavlata L, Pechova A, Illek J (2000): Direct and indirect assessment of selenium status in cattle - a comparison. Acta Veterinaria Brno 69, 281-287. Go to original source...
  28. Pavlata L, Illek J, Pechova A (2001): Blood and tissue selenium concentrations in calves treated with inorganic or organic selenium compounds - a comparison. Acta Veterinaria Brno 70, 19-26. Go to original source...
  29. Pavlata L, Podhorsky A, Pechova A, Chomat P (2005a): Differences in the occurrence of selenium, copper and zinc deficiencies in dairy cows, calves, heifers and bulls. Veterinarni Medicina 50, 390-400. Go to original source...
  30. Pavlata L, Slosarkova S, Fleischer P, Pechova A (2005b): Effects of increased iodine supply on the selenium status of kids. Veterinarni Medicina 50, 186-194. Go to original source...
  31. Pavlata L, Pechova A, Hofirek B (2009): Disorders of trace element metabolism. In: Hofirek B, Dvorak R, Nemecek L, Dolezel R, Pospisil Z et al. (eds.): Diseases of Cattle (in Czech). Ceska buiatricka spolecnost, Noviko a.s., Brno. 702-714.
  32. Pavlata L, Misurova L, Pechova A, Dvorak R (2011): The effect of inorganic and organically bound forms of selenium on glutathione peroxidase activity in blood of goats. Veterinarni Medicina 56, 75-81. Go to original source...
  33. Pechova A, Pavlata L, Illek J (2005): Blood and tissue selenium determination by hydride generation atomic absorption spectrophotometry. Acta Veterinaria Brno 74, 483-490. Go to original source...
  34. Pechova A, Pavlata L, Lokajova E (2006): Zinc supplementation and somatic cell count in milk of dairy cows. Acta Veterinaria Brno 75, 355-361. Go to original source...
  35. Pechova A, Misurova L, Pavlata L, Dvorak R (2008): Monitoring of changes in selenium concentration in goat milk during short-term supplementation of various forms of selenium. Biological Trace Element Research 121, 180-191. Go to original source... Go to PubMed...
  36. Pechova A, Misurova L, Pavlata L, Dvorak R (2009): The influence of supplementation of different forms of zinc in goats on the zinc concentration in blood plasma and milk. Biological Trace Element Research 132, 112-121. Go to original source... Go to PubMed...
  37. Perrone L, Moro R, Caroli M, Toro RD, Gialanella G (1996): Trace elements in hair of heallthy children sampled by age and sex. Biological Trace Element Research 51, 71-76. Go to original source... Go to PubMed...
  38. Phillips CJC, Chiy PC, Omed HM (2004): The effects of kadmium in feed, and its amalioration with zinc, on element balances in sheep. Journal of Animal Science 82, 2489-2502. Go to original source... Go to PubMed...
  39. Podhorsky A, Pechova A, Dvorak R, Pavlata L (2007): Metabolic disorders in dairy calves in postpartum period. Acta Veterinaria Brno 76, S45-S53. Go to original source...
  40. Puchala R, Sahlu T, Davis JJ (1999): Effects of zinc-methionine on performance of Angora goats. Small Ruminant Research 33, 1-8. Go to original source...
  41. Ryan JP, Kearns P, Quinn T (2002): Bioavailability of dietary copper and zinc in adult Texel sheep: A comparative study of the effects of sulphate and Bioplex supplementation. Irish Veterinary Journal 55, 221-224.
  42. Salbe AD, Levander OA (1990): Effect of various dietary factors on the deposition of selenium in the hair and nails of rats. Journal of Nutrition 120, 200-206. Go to original source... Go to PubMed...
  43. Shiobara Y, Yoshiba T, Suzuki KT (1998): Effects of dietary selenium species on Se concentrations in hair, blood, and urine. Toxicology and Applied Pharmacology 152, 309-314. Go to original source... Go to PubMed...
  44. Spears JW, Kegley EB (2002): Effect of zinc source (zinc oxide vs zinc proteinate) and level on performance, carcass characteristics, and imune response of growing and finishinh steers. Journal of Animal Science 80, 747-2752. Go to original source... Go to PubMed...
  45. Teresa M, Vasconcelos SD, Tavares HM (1997): Trace element concentrations in blood and hair of young apprentices of a technical-proffesional school. Science of the Total Environment 205, 189-199. Go to original source... Go to PubMed...
  46. Underwood EJ, Suttle NF (1999a): Selenium. In: Underwood EJ, Suttle NF (eds.): The Mineral Nutrition of Livestock. CABI Publishing, Cambridge. 421-475. Go to original source...
  47. Underwood EJ, Suttle NF (1999b): Zinc. In: Underwood EJ, Suttle NF (eds.): The Mineral Nutrition of Livestock. CABI Publishing, Cambridge. 477-512. Go to original source...
  48. Windisch W (2002): Interaction of chemical species with biological regulation of the metabolism of essential trace elements. Analytical and Bioanalytical Chemistry 372, 421-425. Go to original source... Go to PubMed...
  49. Wu Q (2007): Corelation between hair selenium concentration and gastric cancer. Journal of Nanjing Medical University 21, 29-31. Go to original source...

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