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Biomedical subjects

H Weiser

Publications and source records attributed to H Weiser.

At least 37 records · Page 2Linked to original sources

Vitamin D metabolites prevent vertebral osteopenia in ovariectomized rats.

The present study investigated the prophylactic effects of vitamin D metabolites and vitamin D metabolite combinations on static and dynamic, tetracycline-based, histomorphometric parameters in the axial skeleton of ovariectomized rats. Forty-three Fischer-344 rats (10 weeks old, 130 g each body weight, BW) were either bilaterally ovariectomized (OVX) or sham-operated (SHAM). The rats were allocated into the following groups: SHAM; OVX; OVX + 7.5 ng 1 alpha,25-dihydroxyvitamin D3 [1,25(OH)2D3]/rat/day; OVX + 15 ng 1 alpha,24R,25-trihydroxyvitamin D3 [1,24,25-(OH)3D3]/rat/day; OVX + 75 ng 24R,25-dihydroxyvitamin D3 [24,25(OH)2D3]/rat/day; OVX + 7.5 ng 1,25(OH)2D3/rat/day + 15 ng 1,24,25(OH)3D3/rat/day; OVX + 7.5 ng 1,25(OH)2D3/rat/day + 75 ng 24,25(OH)2D3/rat/day. The vitamin D metabolites were fed orally starting 4 weeks after surgery. Urine and blood samples were collected 12 and 16 weeks postovariectomy, respectively. Sixteen weeks after surgery, all rats were sacrificed, and the first lumbar vertebrae were processed undecalcified for histomorphometric analysis. Ovariectomy induced a highly significant reduction (P less than 0.001) of cancellous bone mass in the secondary spongiosa of the lumbar vertebral body. The bone loss in OVX rats was accompanied by a distinct elevation of all histomorphometric parameters of bone formation and resorption. 1,25(OH)2D3 and both vitamin D metabolite combinations significantly raised serum calcium levels and prevented the bone loss by inhibiting the increased bone resorption in OVX rats. In the applied dosage, 1,24,25(OH)3D3 and 24,25(OH)2D3 alone were ineffective in preserving the cancellous bone of the lumbar vertebra in OVX rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Bioactivity of cis and dicis isomers of vitamin A esters.

In order to declare the accurate vitamin A effectiveness of foodstuffs and synthetic vitamin A preparations, the biological activity of the individual isomers has to be known. Total activity is expressed as all-trans vitamin A equivalents which are calculated by multiplication of analytical content of each isomer with the corresponding biopotency factor. The biological activity of four cis and three or four dicis isomers of vitamin A acetate and palmitate was determined by means of rat vaginal smear assays. The purity of the compounds, the content and isomerisation in stock solutions were checked by HPLC methods prior to their dilution and application to the experimental animals. Based on analytical contents the following activities were found for vitamin A acetate isomers: all-trans 1.00, 13-cis 0.76, 11-cis 0.31, 9-cis 0.19, 7-cis 0.18, 9,13-dicis 0.16, 11,13-dicis 0.18, 9,11-dicis approx. 0.03. The corresponding values for vitamin A palmitate were: all-trans 1.00, 13-cis 0.73, 11-cis 0.34, 9-cis 0.19, 7-cis 0.14, 9,13-dicis 0.21, 11,13-dicis 0.20, 9,11-dicis approx. 0.04, 7,11-dicis approx. 0.12. The vitamin A activity of the cis isomers ranged from about 0.75 for 13-cis to about 0.05 for 9,11-dicis. For the cis series, a biopotency relationship depending on the distance between the beta-ionone ring system and the cis configuration could be observed.

Animals↗

Morphological changes in the tracheal epithelium of guinea pigs in conditions of "marginal" vitamin A deficiency. A light, scanning- and transmission-electron microscopic study under special breeding conditions appropriate to early vitamin A deficiency.

The aim of the study was to find out the influence of marginal vitamin A deficiency on morphological structures in the tracheobronchial epithelium in guinea pigs. The tracheobronchial epithelium of animals with vitamin A deficiency (n = 15) and control animals (n = 7), kept under optimal laboratory conditions, was evaluated by light and electron microscopy. The cellular ultrastructure was morphometrically analyzed. The height of the respiratory epithelium was slightly increased. The basal cells were arranged in a loose cell band of three to four layers. The quantity of cytofilaments in their cytoplasm was enhanced. Goblet cells were significantly reduced in vitamin A deficiency. There was also a significant decrease in their secretory granules. The number of ciliated cells was almost unchanged. They showed a significant reduction in mitochondria. The kinocilia often contained an atypical structure of the microtubules. Our findings confirm multiple ultrastructural dysplasias in early vitamin A deficiency which may lead to a disturbance of mucociliary clearance.

Animals↗

Hepatic concentration of vitamin K active compounds after application of phylloquinone to chickens on a vitamin K deficient or adequate diet.

Liver and serum concentrations of vitamin K active compounds were measured in two groups of (deficient and normal) broilers after administration of phylloquinone 1 mg/kg. Assays were performed by HPLC after extraction and purification of these compounds. The only menaquinone found in the chicken was menaquinone-4. In the deficient group, the chickens exhibited hepatic concentrations of vitamin K1, vitamin K1 epoxide and menaquinone-4 markedly lower than those of the control group. After administration of phylloquinone, vitamin K and vitamin K epoxide levels fell sharply. There is no hepatic storage of vitamin K comparable to that of vitamin A. However, while menaquinone levels were found to be stable in the control group, they rose significantly in the deficient group after vitamin K injection. The question is: is there a transformation of vitamin K into menaquinone and/or is there a preferential utilization of one of the vitamin K active compounds?

Animals↗

Functions of vitamin E in reproduction and in prostacyclin and immunoglobulin synthesis in rats.

The bioactivities of RRR-alpha-, beta-, gamma-, and delta-tocopherol (T) and R-alpha-tocotrienol (R-alpha-TT) were determined in rat resorption-gestation tests. The ranking order was RRR-alpha-T greater than RRR-beta-T greater than RRR-gamma-T greater than or equal to R-alpha-TT greater than RRE-delta-T. Accordingly, the biopotency of a palm-oil residue was assessed and expressed as alpha-tocopherol equivalents (alpha-TEs). The release of pyruvate kinase, a variable in the nutrition-linked necrotizing myopathy, into the plasma was dose-dependently inhibited by the RRR-alpha-T standard and the corresponding alpha-TE from this residue. Prostacyclin synthesis from aorta segments induced by thrombin or ionomycin was higher than the spontaneous release. However, there was no difference between the depleted group and groups treated with RRR-alpha-T or alpha-TEs from the palm-oil residue. Quantities of IgG in plasma of vitamin E-depleted rats were the highest. Upon supplementation with RRR-alpha-T or alpha-TEs from the palm-oil residue, reduced IgG concentrations were observed, similar to those of animals on a commercial diet containing adequate amounts of vitamin E.

Animals↗

Osteopenia caused by ovariectomy in young female rats and prophylactic effects of 1,25-dihydroxyvitamin D3.

Young female rats were subjected to either bilateral ovariectomy or sham operation. One group of ovariectomized (ovx) animals was treated with the vitamin D metabolite 1,25(OH)2D3 after surgery. The effects of ovariectomy and 1,25(OH)2D3 treatment on different markers of bone formation (serum alkaline phosphatase, serum bone gla protein) and bone resorption (fasting urinary hydroxyproline) were determined. All rats were euthanized at 7 weeks post ovariectomy and their first lumbar vertebra were processed undecalcified for quantitative bone histomorphometry. A significant decrease in cancellous bone mass was noted in ovx compared with sham-operated rats. This bone loss was associated with increased biochemical markers of bone formation and bone resorption. Furthermore, ovariectomy led to elevated osteoblast perimeter and osteoid parameters as well as an increased osteoclast number. These data indicate that young growing rats develop osteopenia 7 weeks after ovariectomy which goes along with an accelerated bone turnover. Bone gla-protein, alkaline phosphatase and hydroxyproline can be useful markers in studies with ovx rats. Treatment with 1,25(OH)2D3 led to a lowered urinary hydroxyproline excretion and a significant decrease of osteoclast number whereas histomorphometrical indices of bone formation were nearly unchanged. Cancellous bone mass increased significantly in ovx rats treated with 1,25(OH)2D3 compared with non-treated rats. These results suggest that 1,25(OH)2D3 has a prophylactic effect with regard to bone loss in ovx rats which refers to a diminished bone resorption in the high bone turnover condition of ovx animals.

Animals↗

Aspartate aminotransferase activity in experimentally induced asymptomatic vitamin B6 deficiency in chicks.

Forty-five male Lohmann chicks were grown up to 6 weeks of age. The experimental diet containing a high protein level (30%) was aimed at increasing the metabolic need for PN. Microbiological analysis on the basal ration revealed a marginal content of 4.7 mumol PN/kg. The vitamin B6 status was assessed at the end of the experiment according to the basal activity of aspartate aminotransferase (AspAT) in plasma and in erythrocytes, and the in vitro stimulated activity with pyridoxal 5'-phosphate (PLP). None of the deficient chicks had any clinical signs attributable to malfunction of the nervous system, and they grew as well as those receiving the control diet. Vitamin B6 deficiency was biochemically confirmed by a significant depression of AspAT activity in plasma (p less than 0.001) and in erythrocytes (p less than 0.01). The addition of PLP in vitro enhanced the catalytic activity of the plasma enzyme, but had negligible effect on the erythrocyte enzyme. The degree of stimulation in vitro of the apoenzyme of AspAT not only depends on the endogenous vitamin B6 content, but also on the basal activity of the enzyme. A 15-day repletion period with a daily oral dose (50 mumol PN) did not result in a complete restoration of the enzyme activity, indicating that the availability of apoenzyme had been curtailed. This experiment demonstrated that chicks fed a high protein corn-soyamin diet with a limited amount of PN but containing Saccharomyces yeast showed no nervous signs or perosis, but significant metabolic disturbances.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Crystalloid lysozyme inclusions in Paneth cells of vitamin A-deficient rats.

The effect of vitamin A-deficiency on jejunal Paneth cells in rats was investigated. Crystalloid particles were observed in secretion granules of Paneth cells from 6 out of 8 rats with vitamin A-deficiency. The particles were similar to those found in Paneth cells under other experimental conditions. Using an immuno-electron-microscopic technique we demonstrated a clear lysozyme immunoreactivity of these particles. In 2 vitamin A-deficient rats tubular structures have been detected in addition to the crystalloid particles. Crystalloid particles or tubular structures were not detectable in a control group of 8 vitamin A-supplemented rats. The morphological alterations of Paneth cells may be correlated to an impaired local immunity of the intestine during vitamin A-deficiency.

Animals↗

[Effects of different vitamin D metabolites on the leg weakness syndrome of turkeys].

In two experiments the influence of vitamin D metabolites on leg weakness in turkeys belonging to the Big 6 line was studied. The metabolites were given orally or intravenously in different dosages. There are no differences in vitamin-D-dependent parameters between healthy turkeys and turkeys with leg weakness. Additional oral application of 1,25 (OH)2D3 in dosages of 2, 5 or 10 micrograms per animal day and of 400 micrograms 25 (OH)D3 per animal day had no influence on leg weakness. Even after intravenous application of 2 or 5 micrograms 1,25(OH)2D3 per animal day there were no changes concerning the degree of leg weakness nor were any signs of hypervitaminosis D observed (increase of serum calcium level or increase of the activity of duodenal calcium binding protein). Our results indicate that this form of leg weakness in turkeys is not connected to a disturbance of vitamin D metabolism.

Administration, Oral↗

Role of vitamin D metabolites in the prevention of the osteopenia induced by ovariectomy in the axial and appendicular skeleton of the rat.

Forty Fischer-344 rats (10 weeks old, 130 g BW) were either bilaterally ovariectomized (OVX) or sham-operated (SHAM). The rats were allocated to the following groups: SHAM; OVX; OVX + 15 ng 1 alpha,25-dihydroxyvitamin D3 [1,25(OH)2D3]/rat/d; OVX + 30 ng 1 alpha,24R,25-trihydroxyvitamin D3 [1,24,25(OH)3D3]/rat/d; OVX + 15 ng 1,25(OH)2D3/rat/d + 30 ng 1,24,25(OH)3D3/rat/d. The vitamin D metabolites were fed orally starting 4 weeks after surgery. Urine and blood samples were taken at several time points during the experiment. Twenty-one weeks after surgery all rats were sacrificed, and the proximal tibiae and the first lumbar vertebrae were processed undecalcified for static bone histomorphometry. Ovariectomy induced a 40% reduction in vertebral cancellous bone area, and a 69% reduction in tibial cancellous bone area. This bone loss in OVX rats was associated with moderately increased biochemical and histomorphometric indices of bone formation and resorption as compared to values in sham-operated animals. Through inhibition of bone resorption, treatment of OVX rats with 1,25(OH)2D3, 1,24,25(OH)3D3, and the metabolite combination prevented the ovariectomy-induced osteopenia in the lumbar vertebra, and partially prevented cancellous bone osteopenia in the tibial metaphysis. However, OVX rats receiving 1,25(OH)2D3 alone or in combination with 1,24,25(OH)3D3 exhibited hypercalcemia, hyperphosphatemia, hypercalciuria, and impaired bone mineralization. Treatment of OVX rats with 1,24,25(OH)3D3 alone, on the other hand, only slightly increased serum calcium levels and did not impair bone mineralization. Furthermore, the inclusion of 1,24,25(OH)3D3 with 1,25(OH)2D3 partially antagonized the untoward effects of 1,25(OH)2D3 on bone mineralization. These data suggest that the actions of 1,24,25(OH)3D3 on bone metabolism might differ from that of 1,25(OH)2D3, and that 1,25(OH)2D3 and, particularly, 1,24,25(OH)3D3 may be potentially effective agents for the prophylaxis of postmenopausal osteoporosis.

24,25-Dihydroxyvitamin D 3↗