1979Australian Journal of Agricultural ResearchRequires access

Glutathione peroxidase and selenium in sheep. I. Effect of intraruminal selenium pellets on tissue glutathione peroxidase activities

DI Paynter

Open publisher page 23 citations

Abstract

Two groups of sheep, both on a diet deficient in selenium, were either treated with intraruminal selenium pellets (containing 5% elemental selenium, 95% iron) or remained as untreated controls. At 23 weeks after pellet administration, activities of the selenium-containing enzyme glutathione peroxidase were greatly increased in many of the tissues of treated animals compared with the untreated controls. Maximum activity of erythrocyte glutathione peroxidase was reached 20 weeks after pellet administration. The maximum activity was considerably greater than the activity at which selenium-responsive diseases, in particular selenium-responsive unthriftiness, occur. This, together with the greatly increased enzyme activities in other tissues several months after pellet administration, suggests that selenium status can be adequately maintained for long periods by treatment with these pellets. In contrast to monogastric species, it appears that in the ruminant the biological availability of elemental selenium released from pellets, as determined by tissue glutathione peroxidase activities, is similar to that reported previously for selenite.

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What this paper is about

Two groups of sheep, both on a diet deficient in selenium, were either treated with intraruminal selenium pellets (containing 5% elemental selenium, 95% iron) or remained as untreated controls. At 23 weeks after pellet administration, activities of the selenium-containing enzyme glutathione peroxidase were greatly increased in many of the tissues of treated animals compared with the untreated controls. Maximum activity of erythrocyte glutathione peroxidase was reached 20 weeks after pellet administration. The maximum activity was considerably greater than the activity at which selenium-responsive diseases, in particular selenium-responsive unthriftiness, occur. This, together with the greatly increased enzyme activities in other tissues several months after pellet administration, suggests that selenium status can be adequately maintained for long periods by treatment with these pellets. In contrast to monogastric species, it appears that in the ruminant the biological availability of elemental selenium released from pellets, as determined by tissue glutathione peroxidase activities, is similar to that reported previously for selenite.

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Available abstract

Two groups of sheep, both on a diet deficient in selenium, were either treated with intraruminal selenium pellets (containing 5% elemental selenium, 95% iron) or remained as untreated controls. At 23 weeks after pellet administration, activities of the selenium-containing enzyme glutathione peroxidase were greatly increased in many of the tissues of treated animals compared with the untreated controls. Maximum activity of erythrocyte glutathione peroxidase was reached 20 weeks after pellet administration. The maximum activity was considerably greater than the activity at which selenium-responsive diseases, in particular selenium-responsive unthriftiness, occur. This, together with the greatly increased enzyme activities in other tissues several months after pellet administration, suggests that selenium status can be adequately maintained for long periods by treatment with these pellets. In contrast to monogastric species, it appears that in the ruminant the biological availability of elemental selenium released from pellets, as determined by tissue glutathione peroxidase activities, is similar to that reported previously for selenite.

Key concepts: Selenium, Glutathione peroxidase, Peroxidase, Chemistry, GPX3, Pellets, Monogastric, Glutathione

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Glutathione peroxidase and selenium in sheep. I. Effect of intraruminal selenium pellets on tissue glutathione peroxidase activities — Research Paper | ScholarLens