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Biomedical subjects

M Hidiroglou

Publications and source records attributed to M Hidiroglou.

At least 37 records · Page 2Linked to original sources

Effects of vitamin E and fat supplementation on concentration of vitamin E in plasma and milk of sows and in plasma of piglets.

Twenty-seven (Yorkshire) gilts, on a corn-soybean diet up to 57 d of gestation, were assigned to 3 treatment groups. Group 1 received no fat, Group 2 were supplemented with 5% tallow and Group 3 with 5% fish oil. Each group was supplemented with 0.1 ppm Se and 22, 44 or 88 IU of dl-alpha-tocopherol acetate/kg of feed. Samples of gilts' blood were taken at 57, 78 and 99 days of gestation, parturition, 14 and 28 d later. Similarly, first colostrum and milk (14 and 28 days postpartum) were sampled. Blood samples were also taken from the newborn piglets and at 14 and 28 d post natally. Increasing gilts' dietary vitamin E concentrations during gestation and lactation increased alpha-tocopherol levels in the plasma (P < 0.05). No statistical difference was observed (P > 0.05) in gilts' plasma alpha-tocopherol concentration at any blood sampling time among dietary fat treatments. Dietary fat did not affect alpha-tocopherol concentrations in colostrum or milk (P > 0.05). Overall the effect of vitamin E supplementation was linear in the milk at 14 and 28 d of sampling. The level of alpha-tocopherol in the colostrum was much higher than in milk. At birth piglet tocopherol concentrations were very low, perhaps because little tocopherol crosses the placental barrier. At day 14 piglet plasma tocopherol concentrations increased about 4-fold (P < 0.01) with a tendency for a greater concentration in piglets sucking gilts receiving higher levels of alpha-tocopherol. Dietary effects were not found to be significant (P > 0.05).

Animals↗

Liver biopsy in sheep.

Liver biopsies were performed in the same group of 16 sheep on 8 consecutive wk using an apparatus with a fibre optic continuous light source and a telescope. The sheep were placed in a sternal position on a special table constructed of metal pipes (3.8 cm diameter) and 4.5 cm spacing. Approximately 300 mg of fresh liver sample was removed from each sheep to be analyzed for copper or vitamin E.

Animals↗

Plasma 1,25-dihydroxyvitamin D, insulin-like growth factor-1, calcium, magnesium and phosphorus concentrations in pregnant beef cows and calves from a herd with a known history of congenital joint laxity and dwarfism.

An investigation was undertaken to ascertain the possibility of a relationship between calcium, inorganic phosphorus, magnesium, 1,25-dihydroxyvitamin D [1,25(OH)2D], and insulin-like growth factor-1 (IGF-1) concentrations in blood plasma and occurrence of congenital joint laxity and dwarfism (CJLD) in young cattle. Pregnant cows were fed hay (30 cows) or grass silage (122 cows) during winter months (October 15 to calving in March). Blood samples were taken from cows on seven occasions during the experiment and 48 hours after calving, and from calves at birth, and at seven, 14 and 56 days old. Five per cent of calves born (six of 122) to cows fed grass silage and none born to cows fed hay were affected by CJLD. The diet and health status of calves were not significantly (P greater than 0.05) associated with the plasma concentration of 1,25(OH)2D. The plasma calcium concentration declined with age of the calves (P less than 0.05) but was not affected by the occurrence of CJLD. Plasma phosphorus and magnesium concentrations in calves born to cows fed silage were higher (P less than 0.05) than in those born to cows fed hay. At birth and seven days old, plasma phosphorus concentrations were higher (P less than 0.05) in CJLD-affected calves than in healthy calves but the plasma concentration of IGF-1 was not different (P greater than 0.05). It was concluded that the high plasma phosphorus concentrations in CJLD-affected calves and their dams could be related to the aetiology of the CJLD condition in calves.

Animals↗

Effects of bentonite on wool growth and nitrogen metabolism in fauna-free and faunated sheep.

Two experiments were carried out with sheep that originated from a fauna-free flock and were fed a soybean meal-corn silage diet with or without a bentonite supplement. One-half of the sheep fed each diet in each experiment were faunated with a mixed population of ruminal protozoa, whereas the other half of the sheep remained fauna-free until the end of both experiments. Wool growth and daily gain were measured in Exp. 1. (eight rams per treatment), which lasted 110 d, and the metabolic effects in the rumen and intestinal tract of protozoa and dietary bentonite supplement were tested with cannulated wethers (four wethers per treatment) in Exp. 2. The results of Exp. 1 showed decreased wool growth (P less than .05) due to the presence of protozoa in the rumen. Dietary supplementation with bentonite partly offset the decreased wool growth in sheep with protozoa, but there were no effects of dietary bentonite and no protozoa x bentonite interaction (P greater than .05). Daily gain was decreased by the dietary bentonite (P less than .05) supplement but was not affected (P greater than .05) by the ruminal presence of protozoa. In Exp. 2, protozoa increased (P less than .01) the ruminal concentrations of ammonia and decreased (P less than .05) the acetic:propionic acid molar ratio. Fractionation of N in the duodenal digesta flowing from the stomach to the small intestine showed that protozoa decreased (P less than .05) the flow of nonammonia N and bacterial N, and there was a protozoa x bentonite interaction for these effects (P less than .05).(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Biokinetics and biliary excretion of radiotocopherol administered orally to sheep.

Four adult sheep were given .4 microCi/kg of BW of D-alpha[5-Me-3H]tocopherol orally. Plasma alpha-tocopherol specific activities were measured serially during a 72-h period, after which the sheep were killed. The disposition kinetics were best described by the use of a two-compartment model. The radiotocopherol had a slow distribution phase followed by a relatively slow elimination phase. During the 72-h period of serial monitoring the peak plasma specific activities were observed between 32 to 48 h. At slaughter (72 h after dosing) tissue radioactivity distribution indicated a high rate of accumulation in some glandular organs such as the liver and adrenals. Identification of radioactive components excreted in bile, using HPLC or thin-layer chromatography, showed that unchanged radiotocopherol was present only at very low concentrations (less than 3% of the total recovered radioactivity).

Administration, Oral↗

Effects of bentonite and monensin on selected elements in the stomach and liver of fauna-free and faunated sheep.

Forty-eight rams, originating from a fauna-free flock, were divided into three groups of 16 and fed a corn silage-based diet that was unsupplemented (control) or included bentonite or monensin supplements. Eight rams in each group were inoculated with a mixed population of ruminal protozoa; the other rams remained free of protozoa throughout the 110-d experiment. The rams had free access to drinking water and assigned diet. All rams were killed at the end of the experiment, and ruminal and abomasal contents and livers were removed and sampled. Protozoal numbers in ruminal fluid of faunated rams were lower for groups fed bentonite or monensin supplements than for the control group. Bentonite decreased and monensin increased ruminal pH. The ruminal solubilities of Cu, Zn, and Mg were decreased by the presence of ruminal protozoa, but those of Fe, Mn, and Ca were not affected. Bentonite supplement decreased, and monensin supplement increased, the ruminal solubilities of Cu, Zn, and Mg. Protozoa increased the abomasal solubilities of Fe, but the other elements were not affected. Liver concentrations of Cu were decreased by bentonite and increased by monensin, but protozoa decreased the liver concentrations of both Cu and Mg. Liver concentration of Zn was affected by a monensin x protozoa interaction and that of Mg by a bentonite x protozoa interaction. It was concluded that chronic Cu poisoning could be accelerated by dietary supplements of monensin in sheep without ruminal microfauna, and the dietary Cu bioavailability could be decreased by dietary supplements of bentonite in sheep with a normal population of protozoa in the rumen.

Abomasum↗

Plasma and hepatic alpha-tocopherol in cattle following oral or intramuscular supplementation.

Blood and hepatic tocopherol concentration following i.m. injection or oral supplementation was studied in nonlactating dairy cows and pregnant beef heifers, respectively. In Experiment 1, cows received a single i.m. injection of either 4500 IU of d-alpha-tocopherol or 4500 or 7500 IU of dl-alpha-tocopheryl acetate. Plasma and liver tocopherol concentrations were recorded before and up to 4 wk postinjection. In Experiment 2, heifers received either 0, 1000, 2000, or 4000 IU of dl-alpha-tocopheryl acetate daily in the ration for 3 wk. Serum and hepatic tocopherol concentrations were measured before, during, and 3 wk following supplementation. In Experiment 1, level of tocopheryl acetate given influenced plasma and hepatic tocopherol concentrations. Plasma alpha-tocopherol concentration was greater in cows given unesterified tocopherol than an equivalent amount of tocopherol acetate. There was a quadratic relationship between plasma and hepatic tocopherol concentration. In Experiment 2, increasing dietary intake of dl-alpha-tocopheryl acetate failed to increase markedly tocopherol levels in serum or liver. There was no relationship between serum and hepatic tocopherol concentrations. Prior to the trials, serum levels in Experiment 2 were less than plasma levels in Experiment 1, but hepatic levels were greater. Physiological state can influence the relation between circulating and stored reserves of tocopherol, and circulating tocopherol concentration may not be a good indicator of its reserves.

Administration, Oral↗

Research note: efficacy of various flavonoids and simple phenolics in prevention of nutritional myopathy in the chick.

A 33-day feeding experiment was conducted with 3-day-old broiler chicks to assess the efficacy of various flavonoid and simple phenolic antioxidants in preventing nutritional muscular dystrophy (NMD) resulting from vitamin E deficiency. None of the flavonoids or simple phenolics at a dietary concentration of 1,000 ppm completely prevented NMD but quercetin reduced (P less than .05) its incidence and quercetin, morin, and ferulic acid reduced (P less than .05) the severity of the disorder. The low-selenium, low-vitamin E diet also promoted the development of a mild exudative diathesis (ED) in many of the birds, which was inhibited (P less than .05) by the rutin and silymarin treatments, but exacerbated (P less than .05) by quercetin, morin, and ferulic acid. Changes in concentrations of vitamin E in plasma, liver, or muscle, caused by the various treatments (other than vitamin E), were not related to protection against NMD or ED.

Animal Feed↗

Possible roles of vitamin E in immune response of calves.

The effect of vitamin E injections on immune responses of calves was investigated. Treatments were: 0, 900, 1800 and 2700 IU of D-alpha-tocopherol given by injection starting at birth and then a 3 wk interval until the age of 12 wk. Plasma vitamin E levels were significantly higher for supplemented calves than control calves at any of the sampling times. There were no significant differences in the concentrations of immunoglobulin IgG1, IgG2 and titre to Keyhole Limpet Haemocyanin among treatments. However, the general trend was to have higher concentrations of IgG1 and IgG2 with an increase in the levels of vitamin E. Immunoglobulin IgM was significantly higher for calves supplemented with 2700 IU of vitamin E than control calves.

Animals↗

Concentration of plasma and milk vitamin E and plasma beta-carotene of mastitic and healthy cows.

Variation of vitamin E in blood plasma and milk and beta-carotene in blood plasma of 38 healthy and 38 mastitic cows was studied. Cows were assigned to one of the two treatment groups: control and vitamin E supplemented. Vitamin E supplementation was started when cows were dried-off at the end of lactation and continued until 3 months post partum at the rate of 1000 IU per cow daily and then reduced to 500 IU for the remaining lactation. A cow was considered mastitic when somatic cell count of milk was greater than 500 x 10(3) cells/ml. Milk samples with somatic cell counts below 100 x 10(3) cells/ml were from healthy cows. Data on vitamin E concentration of plasma and milk and beta-carotene in plasma were analyzed by a least squares procedure. The model included the effects of treatment, mastitis status, stage of lactation, and all first order interactions. Mean vitamin E levels in plasma and milk of supplemented cows were significantly higher than of the non-supplemented cows. Plasma and milk levels of vitamin E as well as beta-carotene in plasma were significantly lower in mastitic than healthy cows. When data were analyzed with loge, of somatic cell count in milk as an independent regression variable, results were similar. There was a negative correlation of mastitis status with vitamin E levels in plasma (-0.48), milk (-0.24), and beta-carotene in plasma (-0.38).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Vitamin E kinetics after intraperitoneal administration of DL-alpha-tocopherol and DL-alpha-tocopherol acetate in sheep.

The disposition of radiotocopherol after intraperitoneal administration of 14C-labelled-DL-alpha-tocopherol (1 microCi/kg bw, dose 1) and 3H-labelled-DL-alpha-tocopherol (4 microCi/kg bw dose 4) and of D-alpha-tocopherol, after intraperitoneal administration of DL-alpha-tocopherol acetate (100 mg/kg bw) was investigated in sheep. Plasma samples were taken at regular intervals after dosing and assayed for radioactivity and D-alpha-tocopherol. Plasma profiles were modelized using a compartmental approach and the input entry rate (for radioactivity) was identified using a numerical deconvolution method. Based on plasma specific activity (dose 1 and dose 4) and D-alpha-tocopherol plasma concentration (unlabelled alpha-tocopherol acetate), half-lives were not significantly different (99.6 +/- 28.3 h, 121.3 +/- 38.5 h and 75.0 +/- 49.75 h after dose 1, dose 4 and unlabelled alpha-tocopherol respectively). The times to reach maximal plasma concentrations were similar for the 3 test articles (mean values ranging from 21.5 to 26.7 h). The only significant difference was observed for the apparent volume of distribution (with respect to bioavailability) which was much larger for the unlabelled test article. Deconvolution study of plasma specific activity showed: i), that the maximal input rate was reached only after a short delay (3 to 12 h); ii), that half of the activity was absorbed after a delay of 38.13 +/- 16.76 h (dose 1) and 44.3 +/- 6.50 h (dose 4); and iii), that 90% of the activity was absorbed after 151.2 +/- 27.3 h (dose 1) and 162.3 +/- 11.2 (dose 4). It is concluded that the intraperitoneal route is of interest for alpha-tocopherol administration, but that more information is required to determine the exact process of absorption.

Absorption↗

Effect of vitamin E supplementation and of health status of mammary gland on immunoglobulin concentration in milk of dairy cows.

Variation of milk IgG1, IgG2, IgM, and IgA measured by radial immunodiffusion was studied in monthly samples of 224 lactating dairy cows. Cows were assigned to one of 2 treatment groups: vitamin E supplemented and controls. Vitamin E supplementation was started when cows were dried and continued until 90 days post partum at the rate of 1,000 IU per cow daily and then reduced to 500 IU for the remaining lactation. There were no significant differences between the 2 treatment groups for the different Ig classes. Concentrations of IgG1 were significantly higher in milk from mastitic than non-mastitic cows.

Analysis of Variance↗

Plasma alpha-tocopherol profiles in sheep after oral administration of dl-alpha-tocopheryl acetate and d-alpha-tocopheryl polyethylene glycol-1000 succinate.

Twenty-five yearling wethers, weighing 45 to 50 kg, were used in a trial designed to compare the bioavailability of dl-alpha-tocopheryl acetate (TA) and d-alpha-tocopheryl polyethylene glycol-1000 succinate (TPGS). The sheep, five per treatment, were each given a basal diet without vitamin E supplement (control) or with a daily oral supplement of 240 iu TA or TPGS, or of 480 iu TA or TPGS. Blood samples were obtained at zero time, and then twice daily for three weeks. The bioavailability was greater for TA than for TPGS. This was indicated by the significantly higher (P less than 0.01) plasma alpha-tocopherol concentrations during the three-week experimental period in sheep dosed with equivalent units of TA than in those dosed with TPGS. When administered at 480 iu, the TPGS produced plasma profiles similar to those found after administration of the lower (240 iu) dose of the TA.

Administration, Oral↗

Disposition kinetics and dosage regimen of vitamin E administered intramuscularly to sheep.

Three experiments were conducted to estimate the effects of single intramuscular (IM) administrations of vitamin E on blood plasma and tissue concentrations of alpha-tocopherol in sheep. In Expt 1, plasma kinetics of alpha-tocopherol in sheep (n 30) were investigated following IM administration of three doses (ten sheep/dose) of DL-alpha-tocopheryl acetate, (20, 40 and 60 mg/kg live weight). Plasma profiles of alpha-tocopherol consisted of a lag phase followed by an apparent first-order absorption and elimination phase. The rate of absorption and elimination, as well as the lag phase, were independent of the dose, but the extent of absorption was directly proportional to dose. In Expt 2 (eighteen experimental and five control sheep), the animals were injected as in Expt 1 and were killed at 0, 80 and 176 h. Increases in alpha-tocopherol levels in organs were much higher than in plasma. Some tissues such as liver, spleen, lung and adrenal appeared to exhibit rapid absorption and elimination phases. The amount absorbed was proportional to the dose administered. Other organs such as heart, kidney and pancreas had a slow elimination rate. In Expt 3, D-alpha-tocopherol was injected IM into ten sheep at either 604 mg or 1208 mg. The mean hepatic alpha-tocopherol concentrations in both groups rose rapidly and after 4 weeks of dosing its concentrations were higher than the predosing levels. The increase in hepatic tocopherol concentrations were higher following 1208 mg dosing than 604 mg D-alpha-tocopherol. No simple relationship existed between plasma and hepatic alpha-tocopherol concentrations. This suggests a difference in body mechanisms controlling vitamin E in blood and liver.

Animals↗

Tolerance of the preruminant calf for excess manganese or zinc in milk replacer.

In two experiments, calves were fed milk replacer containing 40, 200, 500, 1000, or 5000 ppm Mn or 40, 200, 500, 700, or 1000 ppm Zn in DM, from 3 to 38 d of age, to estimate the minimum toxic concentrations of Mn and Zn. Starting at 1000 ppm Mn, weight gains and feed efficiencies were decreased slightly; none of the calves fed 5000 ppm Mn survived the 5-wk experiment. Liver and bile showed the largest increases in Mn concentration. In the Zn experiment, only at 700 and 1000 ppm Zn were weight gains, DM intake, and feed efficiency reduced. Largest Zn increases were in liver, kidney, and plasma. Thus, performance of the preruminant calves was not affected adversely by 500 ppm Mn or 500 ppm Zn in milk replacer, concentrations that are markedly higher than the NRC recommendations of 40 ppm Mn and 40 ppm Zn. However, Mn and Zn concentrations increased in some tissues, and toxicities might have arisen if the trial had been continued. Evidence was not obtained indicating that the calf benefits from Mn or Zn intakes above the NRC recommendations.

Animal Feed↗

Plasma alpha-tocopherol profiles in sheep after oral administration of dl-alpha-tocopheryl acetate and d-alpha-tocopheryl succinate.

The purpose of this study was to compare the bioavailability of dl-alpha-tocopheryl acetate and d-alpha-tocopheryl succinate when administered to sheep in a single oral dose weekly. The sheep, five per treatment, were given a basal diet without vitamin E supplement (control) or basal diet with weekly administration of 2225 IU of dl-alpha-tocopheryl acetate, 2225 IU of d-alpha-tocopheryl succinate, or 6675 IU of d-alpha-tocopheryl succinate. Increases in plasma alpha-tocopherol concentration levels over the 3-wk period of study were determined and compared. The greater availability of dl-alpha-tocopheryl acetate was indicated by the significantly higher peak plasma alpha-tocopherol concentrations and the greater area under the curve produced by administration of the acetate than the succinate esters at the same dosage. Reported data on plasma alpha-tocopherol concentrations suggest that bioavailability in sheep of d-alpha-tocopheryl succinate versus dl-alpha-tocopheryl acetate is 3:1.

Administration, Oral↗

Bioavailability of vitamin E in sheep administered intramuscularly with D-alpha-tocopherol.

Two groups of five wethers each (40-50 kg body weight) were used. All were dosed intramuscularly (gluteus) with D-alpha-tocopherol. Five randomly selected sheep received a dose of 900 IU while the other five received 1800 IU. Doses were administered at 0, 6 and 14 days and at 7 day intervals for an additional 6 weeks. Plasma and liver samples were taken at various times. Single exponential equations provided good characterization of the multiple dose trough D-alpha-tocopherol concentrations in plasma and liver. There was a significant dose-response relationship for maximum concentration, area under the plasma curve and levels of hepatic alpha-tocopherol. These levels were proportional to the D-alpha-tocopherol dose given.

Animals↗

Plasma kinetics of tritiated d-alpha-tocopherol in sheep given intravenously in emulsion or ethanol.

Thirteen crossbred wethers were given intravenously tritiated d-alpha-tocopherol (2 microCi/kg of bw) dissolved in emulsion or ethanol. Kinetic evaluation of the plasma specific activity versus time data was performed using either the 2- or 3-compartment model. The disappearance of the radiolabelled alpha-tocopherol from the plasma pool was affected by the nature of the vehicle administered. Radiotocopherol was cleared from plasma much faster when it was dissolved in ethanol than in emulsion; when radiotocopherol was injected as an emulsion concentration time curves were best described as a 2-compartment open model and in ethanol the kinetic data fitted a sum of three exponentials. The data showed higher bioavailability of the intravenously injected vitamin E in emulsion over ethanol.

Animals↗