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Biomedical subjects

M Hidiroglou

Publications and source records attributed to M Hidiroglou.

At least 91 records · Page 5Linked to original sources

Plasma and milk concentrations of vitamin D3 and 25-hydroxy vitamin D3 following intravenous injection of vitamin D3 or 25-hydroxy vitamin D3.

Plasma levels of vitamin D3 or 25-hydroxyvitamin D3 in ewes after administration of a single massive intravenous dose of vitamin D3 (2 X 10(6) IU) or 25-hydroxy vitamin D3 (5 mg) were determined at zero, one, two, three, five, ten and 20 days postinjection. In six ewes injected with vitamin D3 conversion of vitamin D3 to 25-hydroxy vitamin D3 resulted in a six-fold increase in the plasma 25-hydroxy vitamin D3 level within one day. Elevated levels were maintained until day 10 but by day 20 a substantial decline in the plasma 25-hydroxy vitamin D3 level had occurred. Peak levels of vitamin D3 were reached one day after injection and then continuously declined until day 20. Administration of 25-hydroxy vitamin D3 increased plasma concentrations of 25-hydroxy vitamin D3 to fivefold higher levels than those observed when vitamin D3 was injected, with approximately threefold higher levels of 25-hydroxy vitamin D3 maintained for five days. On day 10 and day 20 ewes which were injected with 25-hydroxy vitamin D3 still maintained plasma levels of 25-hydroxy vitamin D3 which were twice as high as those of ewes injected with vitamin D3. In six ewes injected with vitamin D3, a sharp increase in vitamin D3 level in milk occurred within one day and more than a tenfold elevation of milk vitamin D3 concentrations were maintained for ten days. By 20 days the milk vitamin D3 level had returned to preinjection levels. These observations suggest that indirect supplementation of the suckling ruminant with vitamin D3 may be achieved through maternal injection and subsequent mammary transfer.

Animals↗

Vitamin D3 levels in certain sheep tissues at various times after the intramuscular administration of vitamin D3.

Twenty crossbred wethers were injected intramuscularly with 1 X 10(6) IU of Vitamin D3 and four killed at the end of each of five time periods (1, 2, 3, 4 and 7 months). The results indicated that in these sheep dosed with this large dose of vitamin D3, their depletion in this liposoluble vitamin was a long process. The rate of uptake varied for the different tissues examined. Among the various tissues, vitamin D3 was stored primarily in the adipose tissue. One month after administration of vitamin D3, levels amounted to approximately 220 ng/g fresh tissue and 7 months later there were still appreciable amounts of D3 (2.5 ng/g fresh tissue). Kidney, pancreas, liver had also accumulated a significant amount of the administered dose (1st month: 58, 32 and 20 ng/g fresh tissue, respectively) which was retained in these sheep's organs for over 4 months (13, 32 and 15 ng/g fresh weight). In three muscles (heart and two skeletal muscles) appreciable amounts of vitamin D3 were recorded, which remained high until 4 months after administration (over 8 ng/g fresh tissue). The lowest uptake was recorded in the skin (9 ng/g the first month and 4 ng/g fresh weight at the end of experiment). All these results show that vitamin D3 was taken up rapidly by various tissues and was retained for a long period of time.

Adipose Tissue↗

Blood plasma minerals and vitamins and acid-base status of sheep raised under fluctuating or constant environment.

Seasonal changes of concentrations of calcium, magnesium, iron, vitamins A and E, and venous blood, partial pressure of oxygen, pH, and partial pressure of carbon dioxide in blood plasma were measured from May to mid-November, 1980, in 49 nonpregnant ewes housed either in an air-conditioned barn or in a conventional barn with free access to a barnyard. Calcium, iron, and plasma magnesium differed for both location and date. All three constituents were affected by interaction of season with location. Interaction of location and date was highly significant for both vitamins A and E concentrations in plasma. Location was a significant factor only for partial pressure of oxygen of blood whereas interactions of locations with dates was highly significant for both that and pH. The partial pressure of oxygen of blood in the outside group was generally higher than that of the indoor group. It was higher in the outside group when the outside temperature was high. In both groups the lowest partial pressure of carbon dioxide was recorded in August and November.

Acid-Base Equilibrium↗

Effect of large oral and intravenous doses of vitamins D2 and D3 on vitamin D in milk.

Vitamins D2 and D3 were measured in milk after high performance liquid chromatography of unsaponifiable lipids first on a silica column and then on a reverse-phase column. Milk from cows kept indoors contained barely detectable vitamin (less than 2 IU/100 ml) predominantly in the form of vitamin D3. When cows were given 5 or 10 million IU vitamin D3, maximums were in milk 3 to 7 days after oral doses and up to 10 days after intravenous injections. Maximums ranged from 7 to 90 IU/100 ml. Two cows were given given a mixture of 1 million IU vitamin D2 and 1 million IU vitamin D3 orally, and of the vitamins were maximum 2 to 3 days after the dose in blood plasma and a day later in milk. Equal amounts of the two forms of the vitamins were in milk, but vitamin D3 in plasma was double vitamin D2. Different mechanisms control concentrations of vitamins D2 and D3 in blood and milk after large doses.

Administration, Oral↗

The effects of thiosalicylic and hydroxyethylethylenediaminetriacetic acids on the absorption and excretion of 54Mn and 65Zn in the duodenally dosed sheep.

Nine sheep, each prepared with a single cannula in the ascending duodenum and a reentrant cannula in the terminal ileum were fed a purified diet deficient in manganese and zinc for a period of 1 month. The sheep were then divided into three equal groups and duodenally dosed with a mixture containing MnSO4, ZnSO4, 54Mn, 65Zn, and water (control), thiosalicylic acid (TSA), or hydroxyethylethylenediaminetriacetic acid (HEDTA). Blood and ileal digesta were sampled for 24 h and total urine and feces were collected for 14 days after dosing. Plasma uptake of 54Mn 1 h after dosing was more than threefold higher in the HEDTA-dosed sheep than in other sheep, indicating higher absorption of 54Mn. This was accompanied by a lower flow of 54Mn through the terminal ileum during the first 12 h after dosing. However, total 14-day urinary and fecal excretion of 54Mn and 65Zn were apparently higher in the HEDTA-dosed sheep than in other sheep, each approaching 100% of the dose. Excretion of 54Mn and 65Zn in TSA-dosed sheep was apparently higher than in control sheep. Plasma uptake 65Zn was higher in TSA-dosed sheep and lower in HEDTA-dosed sheep than in control sheep. However, total 14-day excretion of 65Zn in feces and urine was slightly higher in TSA-dosed than in control sheep. It was concluded that chelation of Mn and Zn with HEDTA or TSA would aggravate rather than alleviate a Mn or Zn deficiency in sheep.

Animals↗

Chemical composition of sheep bones as influenced by molybdenum supplementation.

Two corn silage diets containing .4 and 10 to 12 ppm molybdenum (dry matter) were fed ad libitum to two groups of six crossbred wethers each. Wethers were kept on these diets for 7 mo, and at slaughter various bones of front legs were dissected. Wethers fed added molybdenum had more molybdenum and zinc in bones than controls. Greater concentration was in the later ossifying portion of the bone than in the more mature areas. Copper, magnesium, phosphorus, calcium, and total ash of sheep bones were unaffected by dietary molybdenum. The compact shaft contained more ash, calcium, phosphorus, and magnesium than the proximal and distal part of the bone. No differences were significant in nitrogen, carbon dioxide, and uronic acid contents of the various bones between the two diets. Site of bone sampling, however, influenced organic composition of bones. Nitrogen concentration was greater at proximal and distal ends of bone than in the shaft. Carbon dioxide varied similarly but in a reciprocal fashion.

Animals↗

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Animal Population Groups↗

Trace elements status of fetuses from ewes fed a copper-deficient ration.

Tissue samples were taken from 130-day-old fetuses from ewes fed a synthetic diet low in copper (Cu), a Cu-supplemented synthetic diet, or a roughage diet adequate in Cu content. The fetal liver and kidney Cu concentrations were substantially lower when the dams were fed the Cu-deficient ration than when they were fed the Cu-supplemented ration or natural diet. Differences between dams' rations in Cu concentrations for the other 3 fetal tissues (spleen, heart, and lung) were small. Differences among groups in fetal tissue iron concentrations were not significant at the P greater than 0.05 level. Concerning zinc concentrations, there were significant interactions between dams' diets and fetal tissues, mainly attributable to differences between rations in liver, heart, and kidney zinc levels. For manganese, the difference among dams' rations and among fetal tissues were significant at the 1% level, but the interactions of ration x tissue were also significant. Heart and spleen manganese concentrations were substantially higher in the fetuses from dams given Cu-deficient diet than in fetuses from dams fed Cu-adequate diet.

Animals↗

Factors affecting the calcium, magnesium and phosphorus content of beef cow milk.

This paper reports the calcium, magnesium and phosphorus content of milk from Shorthorn cattle during the five month calf nursing period as well as the effect of prepartum administration of a single intramuscular dose of vitamin D3 or of 25-hydroxyvitamin D3 on the milk mineral constituents. The colostrum of the group which received 25-hydroxyvitamin D3 was found to contain a higher percentage of calcium on the second and third day than the colostrum of control cows or those receiving D3. No differences occurred in colostrum magnesium or phosphorus contents due to prepartum treatment. Calcium, magnesium and phosphorus concentrations were all high in the first day of lactation, but declined until the third day after parturition. Milk calcium, magnesium and phosphorus content of individual cows was not uniform throughout the lactation and the variation was different for different cows.

Animals↗

Plasma amino acid levels in the fat cow syndrome.

Assays of free amino acids in the plasma of 12 cows with the fat cow syndrome (FCS) and 17 healthy cows were carried out from parturition to 6 weeks of lactation. Plasma concentrations of phenylalanine, histidine, glutamic acid and lysine in the cows with FCS were significantly higher (P less than 0.01) than in the healthy cows. In contrast, the cows with FCS exhibited a (P less than 0.01) lower concentration of threonine, glutamine, asparagine and citrulline. It is suggested that the reported changes in the plasma amino acids of cows with FCS could be a reflection of the metabolic alteration in the control mechanism of gluconeogenesis. For the majority of plasma amino acids, no clear pattern emerged which could be associated with the time of sampling.

Amino Acids↗

Epiphysiolysis, a possible cause of limb deformities in lambs.

The process of enchondral growth of long bones of four three month old lambs raised in total confinement and showing bowed forelimbs was investigated. The results, based on radiologic, histologic, and fluorescence microscopic examinations were compared to findings made in four age-matched controls. The principle finding was that the transition from cartilage cores to primary trabeculae at the growth plate was deficient. In two instances a slipping of the distal radial epiphysis and in one instance a slipping of the metacarpal epiphysis was found. In the others, evidence of a healed slipping was present. It is postulated that the slip is responsible for the deformity.

Animals↗

Plasma levels of copper, iron and zinc during the estrous cycle of the ewe.

Serum levels of copper, iron and zinc were determined throughout complete estrous cycles in 16 ewes. All ewes were normally cycling females exhibiting normal serum progesterone patterns. Copper serum levels tended to be higher during the preovulatory and ovulatory times, presumably due to the transfer of hepatic celuloplasmin as a result of the release of endogenous estrogen. Iron and zinc plasma levels were higher during estrous when the ovarian tissue requirement was higher. It is suggested that the control mechanism responsible for the variations in copper, iron and zinc plasma levels during the estrous cycle may be hormonal in nature.

Animals↗

Maternal-fetal relationships of copper, manganese, and sulfur in ruminants. A review.

Placental transfer and localization of copper, manganese, and sulfur in the ruminant are described. The fetus is completely dependent upon the dam for its supply of these minerals. Numerous studies have shown significant correlations between fetal and maternal tissue copper concentration. Because copper is essential for development of the central nervous system of the embryonic lamb, an acute maternal hypocuprosis can cause gross brain lesions in the fetal or neonate lamb. Manganese deficiency in the gestating ruminant has deleterious effects on the developing embryo; inadequate dietary manganese induces an abnormal development of the epiphysial fetal cartilage. This review provides information on partition of dietary sulfur between maternal tissues, fetus, and placenta. Sulfur may be transferred to the ruminant fetus in a variety of organic forms as well as in the inorganic form.

Animals↗

Silicon in plasma of sheep.

Plasma silicon (Si) concentrations were determined (i) in lambs at 49 days of age reared artificially in confinement (system A), or fed a postweaning diet, or suckled and reared conventionally (system B), (ii) in 2-year-old ewes reared under systems A and B, (iii) in lambs at 49, 70, and 100 days of age reared under system A, and (iv) in lambs (reared under system A) injected with a vitamin D3 preparation. The lambs reared under system A had a significantly lower (P less than 0.01) plasma Si concentration than did lambs reared under system B, but in ewes there was no significant difference (P greater than 0.05) between the 2 rearing systems. Plasma Si concentration of lambs increased (P less than 0.01) as the lambs aged. The vitamin D3 injection had no significant effect (P greater than 0.05) on the plasma Si value.

Age Factors↗

Transfer of tritium-labeled vitamin D3 and 25-hydroxyvitamin D3 in ovine placenta.

Placental transmission of IV-administered label from vitamin D3 and 25-hydroxycholecalciferol was studied in gestating ewes. Radioactivity concentrations were higher in the tissues of ewes dosed with vitamin D3 than in those dosed with 25-hydroxycholecalciferol. Concentrations were higher in maternal tissues than in fetal tissues. The highest radioactivity concentrations were found in kidneys, followed by concentrations in the adrenal glands.

Animals↗

Hypomagnesaemia in beef cows wintered in Ontario.

A field experiment was undertaken in northern Ontario in order to assess the magnesium status of beef cattle raised in the area. Magnesium status was assessed using several criteria including blood and urine magnesium levels, and bone biopsy samples. Eighteen groups each containing four pregnant Shorthorn beef cows were used. Each of the following three mineral feeds were offered to six groups throughout the experiment: a mineral feed without magnesium, a mineral feed containing 8% magnesium in the form of magnesium oxide and the third containing sequestered magnesium with a magnesium level of about a tenth of that in the mineral feed containing magnesium oxide. During the winter, when the cows were housed indoors, they were fed grass silage. Six groups, two of each mineral feed, remained indoors throughout the summer. The other 12 groups were turned out to pasture on May 25 and continued receiving the appropriate mineral feed. There were no differences in serum magnesium owing to magnesium-supplementation treatments observed at any time during any experiment. Serum magnesium levels fell drastically in all groups before the cows were released to pasture, implying that the hypomagnesaemic condition was attributable to the stress of yarding. The rate of recovery from hypomagnesaemia was slower in the cows released to pasture than in those kept indoors. Urine samples from cows returned to the pasture were indicative of low magnesium status. At the end of the experiment, the magnesium levels in the bones of the housed animals were higher than for those on pasture. In spite of severe cases of hypomagnesaemia, no clinical signs of this metabolic condition were observed.

Animal Feed↗