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Biomedical subjects

J Työppönen

Publications and source records attributed to J Työppönen.

12 recordsLinked to original sources

Histopathological and biochemical changes associated with selenium and vitamin E deficiency in chicks.

One day old unsexed White Leghorn chicks obtained either from commercial hens fed adequate levels of selenium (Se) and vitamin E (VE) (Comm. chicks), or from hens depleted in both nutrients (Depl. chicks), were fed a low Se-VE semi-synthetic basal diet. The dietary Se content was kept constantly low, while graded levels of VE as dl-alpha-tocopheryl acetate (dl-alpha Ta), (0, 5, 10 or 15 mg VE/kg diet) were fed for six weeks. An efficient carry-over of Se and VE from hens to their progeny was observed by a significant increase in their muscle Se, liver Se-glutathione peroxidase (Se-GSH-Px), and VE content at hatching. In the Depl. chicks, signs of Se-VE deficiency, i.e. exudative diathesis (ED) were observed at hatching, indicating that the deficiency lesions had developed during the embryonic period, whereas these signs were not observed in Comm. chicks on the depletion diets until they were 2 weeks old. The VE supplemental level of 15 mg/kg was not adequate to provide a complete protection against ED. Exudative diathesis was associated with low levels of muscle Se, liver Se-GSH-Px and VE and was also accompanied by a simultaneous increase in the liver non-Se-GSH-Px. Autopsy findings and histopathological lesions were observed only in subcutaneous tissue and skeletal muscle. The subcutaneous tissue was edematous with hyaline vascular lesions and hemorrhages. The thigh muscles were more susceptible to deficiency lesions than were the breast muscles, and showed in acute stages degenerative processes of the muscle fibers including calcium deposits, vascular lesions and hemorrhages. In subacute and chronic cases, reparative changes and muscle damage may develop independently of the hyaline vasculosis. To prevent ED, adequate Se and VE in chick diet is essential after hatching, irrespective of their tissue reserves of both nutrients at 1 day of age.

Animals↗

Possible roles of vitamin E and glutathione metabolism in bovine mastitis.

Plasma and milk levels of vitamin E were determined in mastitic and healthy cows and compared with erythrocyte GSH and GSH-peroxidase, selenium, silicon, prostaglandins and parameters commonly used for diagnosing mastitis. In mastitis both the plasma and milk levels of vitamin E were significantly lowered. In the milk vitamin E correlated negatively with electrical conductivity and PGE2. In the blood vitamin E was in a positive correlation with erythrocyte GSH. The role of lipid peroxidation in relation to the inflammatory and immunological reactions of mastitis is discussed.

Animals↗

Intestinal absorption of vitamin E in low birth weight infants.

Intestinal absorption of dl-alpha-tocopheryl acetate was studied in low birth weight infants. Vitamin E was given from the first day of life, either as a water-soluble (Ephynal) or as a lipid-soluble preparation (E-vitamin). Serum-alpha-tocopherol concentrations were determined before treatment and on days three and seven. Treatment with both vitamin E preparations increased serum-alpha-tocopherol on day three and seven. The mean serum-alpha-tocopherol +/- SD on day seven were 41.4 +/- 10.7 mumol/l for the Ephynal group and 26.7 +/- 12.5 mumol/l for the E-vitamin group, this difference being statistically significant (p less than 0.025). Oral feeding seems to influence the absorption of tocopherol from E-vitamin, as the infants with the highest serum-alpha-tocopherol concentrations were those with the highest oral/total feeding ratios. In infants with birth weight less than 1 000 g treatment with 25 mg Ephynal/day was found to increase serum-alpha-tocopherol on day seven to 46.9 +/- 12.3 mumol/l (mean +/- SD). This concentration is comparable to those reported by others using higher doses of oral vitamin E.

Humans↗

Vitamin E requirement of mink with special reference to tocopherol composition in plasma, liver, and adipose tissue.

Tissue responses of 4 different tocopherols found in a basal diet (BD) and the effect of 2 physiologic levels of dl-alpha-tocopheryl acetate (25 and 150 mg/kg) on tissue tocopherol content were studied in the mink. The BD contained a total of 7.1 mg vitamin E/kg, with alpha-, beta-, gamma-, and delta-tocopherol in a ratio of 1:0.07:0.55:0.10, respectively. The corresponding ratios in the tissues were: liver, 1:0.04:0.12:0; plasma, 1:0:0.13:0; and adipose tissue, 1:0:0.19:0. After mink were fed diets containing vitamin E, alpha- and gamma-tocopherol were distributed in similar proportions in plasma and liver, but gamma-tocopherol was in a slightly higher proportion in adipose tissue. Addition of 25 or 150 mg/kg of alpha-tocopheryl acetate to the BD decreased the gamma-tocopherol levels in all 3 tissues; this was considered to be a dilution effect of other tocopherols in BD with added alpha-tocopheryl acetate. The beta-tocopherol content in the liver remained unchanged, irrespective of the dietary amount of alpha-tocopheryl acetate. Plasma alpha-tocopherol had a linear relationship to log dietary dose, with an apparent half-saturation of the vitamin E binding capacity at 13 mg vitamin E/kg diet. At the given dietary levels, liver and adipose continued to accumulate alpha-tocopherol. The correlation between total plasma lipids and plasma alpha-tocopherol was significant (P less than 0.001) only in the group fed the BD. Vitamin E analysis of plasma could be used as a routine method for controlling the vitamin E status of mink.(ABSTRACT TRUNCATED AT 250 WORDS)

Absorption↗

Activities of some enzymes in the tissues of the blue fox (Alopex lagopus).

The activities of aspartate aminotransferase (AST), alanine aminotransferase (ALT), ornithine carbamoyltransferase (OCT), sorbitol dehydrogenase (SDH), gamma-glutamyl transferase (GGT), alkaline phosphatase (AP), lactate dehydrogenase (LDH) and creatine kinase (CK), were determined in eight organs of 10 healthy male blue foxes. OCT was absolutely liver specific and ALT was also found to be liver specific. SDH was also found primarily in the liver but its activity was relatively low. GGT was found almost exclusively in the kidneys. The highest levels of AP were observed in the kidneys and in the intestines. LDH together with AST was present in high activities in all the tissues tested. CK activity was highest in skeletal and cardiac muscles.

Alanine Transaminase↗

Influence of extracellular proline on collagen synthesis in rat liver slices.

The synthesis of collagen was measured in incubated rat liver slices. The concentration of proline in the medium was varied, but the specific radioactivity of proline was kept constant. The synthesis of total protein was found to be about 500-fold that of collagen. The incorporation into hydroxyproline--that is, the synthesis of collagen--and the total incorporation of proline into protein were dependent on the concentration of proline in the medium, by Michaelis-Menten kinetics, with an apparent Km of 0.40 mM for the synthesis of collagen and 0.43 mM for the synthesis of total protein.

Animals↗

Nutritional muscular degeneration in young heifers.

Young heifers with nutritional muscular degeneration had relatively low serum tocopherol values despite being on pasture which contained high levels of vitamin E. One possible explanation may be that vitamin E was destroyed within the rumen, another that the clinical symptoms arose very soon after turning out the animals.

Animal Feed↗