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Biomedical subjects

S Edelstein

Publications and source records attributed to S Edelstein.

At least 73 records · Page 4Linked to original sources

Calbindin-D in peripheral nerve cells is vitamin D and calcium dependent.

The vitamin D-induced calcium-binding protein calbindin-D (CaBP) was localized immunohistochemically in some but not all of the cell bodies and axons within the intestinalis nerve of the chicken. Unlike other nerve tissue thus far examined, the CaBP content of the intestinalis nerve was decreased in vitamin D deficiency and increased in chicken adapted to a calcium-deficient diet. These changes are qualitatively similar to the pattern of response of enterocytes. The inclusion of calcium-containing solutions within the duodenal lumen caused, directly or indirectly, a decrease in the amount of CaBP in this nerve in a dose-dependent manner. The exact role of CaBP in intestinalis nerve cells is unknown but may be in the regulation of intracellular ionic Ca2+ concentrations during excitation, although other functions of CaBP cannot be excluded.

Animals↗

The metabolism of vitamin D3 during fracture healing in chicks.

The metabolism of vitamin D3 was studied in chicks after experimental fractures were performed on their tibiae. The chicks were fed for 3 weeks a vitamin D-deficient diet but were supplemented with radioactive labeled vitamin D3. The chicks were then divided into two groups. In the first group the right tibia was fractured, whereas the second group served as nonfractured control group. During the following days of fracture healing, the metabolites of [3H]vitamin D3 were measured in callus, epiphysis, diaphysis, plasma, duodenum, and kidney. Histological examination of calluses and bones, measurements of intestinal absorption of calcium, and renal production of dihydroxylated metabolites of vitamin D3 were performed as well. The levels of the dihydroxylated metabolites were increased in the calluses and the levels of [3H]24,25-dihydroxyvitamin D3 were found to coincide with the formation of cartilaginous tissue and with the renal production of this steroid. In the duodenum of the fractured chicks, the levels of [3H]1,25-dihydroxyvitamin D3 dropped significantly during the first week after fracture, coinciding with reduction in the intestinal absorption of calcium. In the plasma during those 3 weeks of healing process the levels of [3H]1,25-dihydroxyvitamin D3 were far below normal. These findings indicate that during the process of fracture repair, changes in the metabolism and expression of vitamin D are taking place in order to meet the new requirements of the body under stress condition of skeletal fracture.

Animals↗

Levels of active metabolites of vitamin D3 in the callus of fracture repair in chicks.

The levels of the active metabolites of vitamin D were measured in the callus and in the epiphyseal growth plate of chicks given radioactive cholecalciferol during fracture healing. Those levels were correlated with the histological findings. Three groups of chicks were studied: a control group with no fracture, chicks with fractures fixed by Kirschner wire, and chicks with unfixed fractures. A significant increase in the levels of the active metabolites was found in the callus during the first few days after fracture. The levels of 25-hydroxycholecalciferol [25(OH)D3] and of 24,25-dihydroxycholecalciferol [24,25(OH)2D3] were higher when there was no fixation, while those of 1,25-dihydroxycholecalciferol [1,25(OH)2D3] were higher after fixation. The concentrations of these metabolites in the proximal epiphysis of the tibia were similar to those found in the callus. Based on these findings it is suggested that the active metabolites of vitamin D are directly involved in the process of fracture repair.

Animals↗

Influence of 1,25-hydroxyvitamin D3 on cytosolic free calcium concentrations.

Using isolated cartilage cells from the epiphyseal growth plate of rachitic chicks and utilizing the fluorescence indicator quin2 for measurements of cytosolic free calcium, it has been possible to demonstrate that 1,25-dihydroxyvitamin D3 regulates the concentrations of cytosolic free calcium. The reduction in cytosolic free calcium is associated with inhibition of the activity of alkaline phosphatase. As several hours are required before an effect on cytosolic free calcium can be observed in the cells, it is suggested that the action is dependent on genomic interactions.

Alkaline Phosphatase↗

Impact of tumor control on survival in carcinoma of the lung treated with irradiation.

The long-term results in tumor response, intrathoracic tumor control and survival are reported in patients with medically inoperable or unresectable non-oat cell and small cell carcinoma of the lung. In 376 patients with stages T1-3, NO-2 carcinoma of the lung tumors, accessioned to a Radiation Therapy Oncology Group (RTOG) randomized study to evaluate different doses of irradiation, a higher complete response rate (24%), intrathoracic tumor control (67%) and three year survival (15%) was observed with 6000 cGy, compared with lower doses of irradiation (4000 or 5000 cGy). Increased survival was noted in patients with complete tumor response. Three year survival in complete responders was 23%, in partial responders, 10%, and in patients with stable disease, 5%. Patients treated with 6000 cGy had an overall intrathoracic failure rate of 33% at 3 years, compared with 42% for those treated with 5000 cGy, 44% for patients receiving 4000 cGy with split course, and 52% for those treated with 4000 cGy continuous course (p = 0.02). Patients surviving 6 or 12 months exhibited a statistically significant increased survival when the intrathoracic tumor was controlled. Patients treated with 5000-6000 cGy, showing tumor control, had a three year survival of 22%, versus 10%, if they had intrathoracic failure (p = 0.05). In patients treated with 4000 cGy (split or continuous), the respective survival was 20% and 10%, if the intrathoracic tumor was controlled (p = 0.001). In patients surviving 12 months after treatment with 5000-6000 cGy, on whom the intrathoracic tumor was controlled, the median survival was 29 months, in contrast to 18 months, if they developed intrathoracic failure (p = 0.05). In patients treated with 4000 cGy, the median survival was 23 months with control and 18 months without control of the intrathoracic tumor [corrected] (p = 0.008). In another RTOG study for patients with more advanced tumors (T4 or N3), those with local tumor control at 12 months had a three year survival rate of 25%, compared with 5% for those with thoracic failures. These differences are statistically significant (p = 0.006). Higher doses of irradiation yield a greater proportion of complete response, higher intrathoracic tumor control and better survival in non-oat cell medically inoperable or unresectable carcinoma of the lung.(ABSTRACT TRUNCATED AT 400 WORDS)

Carcinoma, Bronchogenic↗

Use of the beta-carotene rich alga Dunaliella bardawil as a source of retinol.

Dunaliella bardawil, a beta-carotene accumulating halotolerant alga, has been tested as a source of retinol in a chick diet. Chicks were fed diets deficient in retinol or supplemented with retinol, synthetic beta-carotene or dry algae. After an initial lag, chicks grew equally well on diets supplemented with algae, retinol or beta-carotene. Serum and liver analyses revealed a normal content of retinol in all chicks except those grown on the retinol-deficient diet. Chicks fed the algae-supplemented diet contained lutein but no beta-carotene in their serum, even though the ratio of beta-carotene to lutein in the algae was over 15:1. Laying hens fed with an algae-supplemented diet showed enhanced egg yolk colour attributable to a higher lutein content. No beta-carotene was present in the egg-yolk. These studies demonstrate the possibility of using dried Dunaliella bardawil as a dietary supplement which can fully satisfy the retinol requirement and also serve as a yolk-colour enhancing agent.

Animal Nutritional Physiological Phenomena↗

Metabolic acidosis enhances 1,25(OH)2D3-induced intestinal absorption of calcium and phosphorus in rats.

The effect of metabolic acidosis on the intestinal absorption of calcium (Ca) and phosphorus (P), plasma vitamin D metabolites and urinary excretion of Ca in adult rats treated with a small dose of 1,25(OH)2D3 were investigated. The rats in the experimental group received 1.8% ammonium chloride (NH4Cl) and a commercial chow, and their pair-fed controls received 0.45% NaCl. Both groups were given subcutaneously 1,25(OH)2D3. Intestinal absorption of Ca and P was measured by gut sac uptake of 45Ca and 32P. In the acidotic rats, duodenal, jejunal and ileal 45Ca uptake as well as jejunal and ileal 32P uptake were significantly increased. Plasma 1,25(OH)2D, 25(OH)D and 24,25(OH)2D were similar in both groups. 1,25(OH)2D3 treatment induced a greater calciuria in acidotic rats and increased their fractional excretion (FE) of Ca. An additional experiment showed increased 45Ca uptake by duodenum at a pH of 7.0 compared to pH 7.4. The present study suggests that NH4Cl-induced metabolic acidosis may enhance the effect of 1,25(OH)2D3 on intestinal absorption of Ca and P in the rat. However, the data from the study cannot exclude the possibility that acidosis may have a direct, vitamin D-independent effect on the intestine.

Acidosis↗

Lead-binding properties of intestinal calcium-binding proteins.

The bovine and chick vitamin D-induced intestinal calcium-binding proteins (CaBP) bind lead. Bovine CaBP binds 2 atoms of lead/molecule, and chick CaBP binds 4 atoms of lead per molecule and these values are identical to those for calcium binding. 45Calcium-displacement studies indicate significantly higher affinities for lead than for calcium for both proteins. All evidence indicates that lead is bound to the 4 high affinity calcium-binding sites on chick CaBP and to the corresponding 2 high affinity sites on bovine CaBP, and that binding of lead to sulfhydryl groups is, relatively, not significant. Calmodulin, troponin C, and oncomodulin also bind lead with high affinities and in preference to calcium, indicating that lead binding is a general property of proteins belonging to the troponin C superfamily of calcium-binding proteins.

Animals↗

Autoradiographic localization of 24R,25-dihydroxyvitamin D3 in epiphyseal cartilage.

There is emerging evidence for specific binding sites and biologic action for 24,25(OH)2D3 in the epiphyseal cartilage. The present study was undertaken to identify the target cells of 24,25(OH)2D3 in the epiphyses of rat bone using an autoradiographic technique. Pieces of epiphyseal cartilage obtained from 4-day-old vitamin D-deficient rats were incubated for 15 or 60 min with [3H]-24,25(OH)2D3 in the presence or absence of 100-fold excess of 25(OH)D3, 1,25(OH)2D3, or 24R,25(OH)2D3. The pieces were prepared for autoradiographic study by a new modified fixation method. Cytoplasmic and nuclear concentration of radioactivity was observed in all cell layers of the epiphyseal cartilage except for the hypertrophic cartilage zone. The highest concentration of radioactivity was seen in the proliferating chondroblasts of the columnar zone. After 15 min of incubation the radioactivity was seen mainly in the cell membrane and cytoplasm, whereas at 60 min radioactivity was also prominent in the nuclei. The competition with excess of cold metabolites revealed that only 24R,25(OH)2D3 caused a significant decrease in cytoplasmic and nuclear radioactivity. These data support the biochemical studies showing that the epiphyseal cartilage is a target tissue for 24,25(OH)2D3.

24,25-Dihydroxyvitamin D 3↗

Effect of bicarbonate feeding on intestinal absorption of calcium and vitamin D metabolism in rats.

The effect of bicarbonate (NaHCO3) feeding on intestinal absorption of calcium and phosphorus and vitamin D metabolism was investigated. Gut sac uptake of 45Ca and [32P]phosphate in vitro, as well as the plasma level of vitamin D metabolites, was determined in rats fed with NaHCO3 for 9 days and their pair-fed controls. Duodenal uptake of 45Ca and [32P]phosphate by alkalotic rats was less than duodenal uptake by controls. 1,25(OH)2D plasma level was much higher in alkalotic rats than in their controls, and 25(OH)D slightly higher than in controls. These data suggest that NaHCO3 feeding causes a substantial increase in 1,25(OH)2D plasma level, but interferes with calcium and phosphorus absorption in the duodenum.

24,25-Dihydroxyvitamin D 3↗

Cholecalciferol metabolites in polycythemic newborns.

Metabolites of cholecalciferol were measured in the sera of healthy and polycythemic newborns at 15.5 and 10.5 h of age (median), respectively. The serum concentrations of 1,25-dihydroxyvitamin D and 24,25-dihydroxyvitamin D were lower in the polycythemic group (P less than 0.003 and P less than 0.001, respectively). As the kidney is the main site of conversion of 25-hydroxyvitamin D to its dihydroxylated metabolites, it is possible that hyperviscosity and subsequent decrease in renal blood flow interfere with the efficiency of the process.

24,25-Dihydroxyvitamin D 3↗

Photo-affinity label for cellular retinol-binding protein.

A number of retinoid derivatives have been synthesized for use as labels for cellular retinol-binding protein. Introduction of substituents abolished the binding of the derivatives to the protein, except in the case of the photo-reactive derivative, 4-azidoretinol. This compound was found to compete successfully with all-trans-retinol for binding to cellular retinol-binding protein, with a high relative binding affinity. Irradiation of a complex of 4-azidoretinol and a semi-purified preparation of cellular retinol-binding protein from liver resulted in a firm attachment stable to SDS-gel electrophoresis. It is therefore suggested that the irradiated product is held together covalently. A method for the synthesis of 4-azidoretinol is described.

Affinity Labels↗

Gastrointestinal absorption of lead in chicks: involvement of the cholecalciferol endocrine system.

The role of dietary calcium and phosphorus in modifying the intestinal absorption of lead and also the effect of lead ingestion on the metabolism of cholecalciferol were studied in chicks. The efficiency of absorption of 203Pb and 47Ca was increased when the animals were fed a low calcium diet and treated with cholecalciferol. The synthesis of the vitamin D-induced calcium-binding protein (CaBP) was correspondingly increased. When the chicks were depleted of vitamin D and repleted with 1,25-dihydroxycholecalciferol [1,25(OH)2D3] as their only source of the vitamin, the absorption of both 47Ca and 203Pb was unaffected by dietary calcium levels, and no change in CaBP levels occurred. Low dietary intake of phosphorus resulted in an increase in 47Ca and 203Pb absorption and in CaBP synthesis when the animals were treated with cholecalciferol. However, when the birds were repleted with 1,25(OH)2D3, the intestinal absorption of 47Ca and of 203Pb was increased, as well as the intestinal CaBP levels. Intracardial injection of increasing doses of 1,25(OH)2D3 to rachitic chicks resulted in a concomitant increase in 203Pb absorption in a manner that correlated with the degree of synthesis of CaBP. Ingestion of lead by the chicks was found to impair growth and renal production of 1,25(OH)2D3, resulting in lowered circulating and intestinal content of the hydroxylated metabolites of cholecalciferol.

Animals↗

Fecal loss of cholecalciferol in gastrectomized rats.

Rats were gastrectomized, and the intestinal absorption and fecal excretion of cholecalciferol were studied following the administration of radioactive cholecalciferol, either by subcutaneous injection or with the aid of a gastric tube. From measurements of radioactivity in feces and sera it has been possible to establish that gastrectomy in rats results in impaired intestinal absorption and increased fecal excretion of cholecalciferol. These findings indicate that gastrectomy alters the nutritional status of vitamin D, and may explain the high incidence of osteomalacia as a complication of gastrectomy.

Animals↗

Early and direct effect of 1,25-dihydroxycholecalciferol on calcium uptake by duodena of rachitic chicks.

Injection of 1,25 dihydroxycholecalciferol (1,25(OH)2D3, 10 micrograms) directly into the in situ ligated duodenal loop of rachitic chicks significantly elevated the tissue accumulation of 47Ca within 20-30 min. The transfer of 47Ca from lumen to blood, during the same time period, was not increased nor was there any measurable intestinal calcium-binding protein synthesized. Lesser amounts of 1,25(OH)2D3 (1 or 5 micrograms) did not result in any statistically significant elevation of 47Ca tissue accumulation, nor did they have any effect on 47Ca transfer from lumen to blood (transmural). Ten micrograms of 1,24R,25(OH)3D3 was similarly effective in elevating tissue accumulation, whereas 24R,25(OH)2D3 and 25(OH)D3 were not. These results provide additional evidence for an early and direct action of 1,25(OH)2D3 in altering intestinal epithelial membrane transport prior to the induction of synthesis of specific transport proteins.

24,25-Dihydroxyvitamin D 3↗

The effect of vitamin D and its metabolites on fracture repair in chicks.

One-day-old chicks were depleted of vitamin D. At 3 weeks their right tibiae, and those of a control group given vitamin D3, were fractured and pinned. After fracture the controls were kept on vitamin D3. Another group was left vitamin D-deficient. The remaining depleted chicks, divided into four groups, were given vitamin D3, 24,25-dihydroxyvitamin D3 [24,25(OH)2D3], 1,25-dihydroxyvitamin D3 [1,25(OH)2D3] or a combination of 24,25(OH)2D3 and 1,25(OH)2D3. The callus obtained after 9 and 14 days was subjected to torsional stress. The callus of chicks given vitamin D continuously showed the greatest resistance, whereas that of vitamin D-deficient chicks showed the smallest resistance. Repletion with either vitamin D3 or its metabolites increased the strength of the callus. Repletion with the combination of 24,25(OH)2D3 and 1,25(OH)2D3 produced the most marked results, in that the callus was even stronger than that of chicks replete with vitamin D3. It is concluded that 24,25(OH)2D3 is essential for bone formation in addition to the known active vitamin D metabolite 1,25(OH)2D3, and the possible clinical implications of these findings are discussed.

24,25-Dihydroxyvitamin D 3↗

Production of the hydroxylated metabolites of vitamin D in a neonate with a single hypoplastic-dysplastic kidney.

The ability to produce dihydroxylated metabolites of vitamin D was studied in a term neonate suffering from severe renal insufficiency. The infant died at age 26 days owing to end-stage renal failure and the necropsy examination showed a single dysplastic kidney weighing 1.5 g. At age 2 weeks the serum levels of the dihydroxylated metabolites of vitamin D were found to be normal and a pronounced increase was noted 24 hours after injection of 100 000 IU vitamin D2. The study suggests that during the neonatal period a small renal mass is sufficient to maintain optimal circulating levels of the dihydroxylated metabolites of vitamin D.

Dihydroxycholecalciferols↗