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S W Whitson

Publications and source records attributed to S W Whitson.

15 recordsLinked to original sources

Factors influencing synthesis and mineralization of bone matrix from fetal bovine bone cells grown in vitro.

This study of the in vitro synthesis and mineralization of bovine bone demonstrates that sheets of mineralized matrix can be produced consistently within 18-24 days of cell isolation. Mineralization surpasses that achieved by other systems with other species: The deposition of mineral extends beyond nodules to form branching trabeculae and then solid wafers of bone. Comparison of the fetal age of the bone source, enzyme digestion methods, seeding density, culture surface, nutritive media, and concentration of fetal calf serum and other additives, including insulin and ascorbic acid, has yielded a set of optimal culture conditions. In the presence of ascorbic acid and beta-glycerol phosphate, insulin has a dose-dependent effect on the morphology of the mineralized bone matrix produced. Quantitative analysis shows that in these cultures calcium accumulates most rapidly between days 6 and 10 after the introduction of mineralization medium but that mineral accretion continues throughout 14-16 days of culture. Alkaline phosphatase levels rise up to 200-fold, concomitant with a rapid increase in the number of cells per culture during the early mineralization phases; both fall as mineralization proceeds. This system has been used to study the induction of mRNA of type I collagen, alkaline phosphatase, and several noncollagenous bone proteins during the course of mineralization. Because of the degree of mineralization achieved with this system, it has many potential applications.

Alkaline Phosphatase

Bone matrix mRNA expression in differentiating fetal bovine osteoblasts.

In the accompanying study, we report an in vitro culture system from bovine bone cells that can be applied to investigate bone cell growth and differentiation. In this system, bovine bone cells placed in mineralization medium formed multilayers (days 2-3), began deposition of mineral (days 5-6), and eventually acquired a mineralized matrix sheet (days 14-20) through the stages of mineralizing nodules and trabecular-like structure. In the current study we used this system to investigate the relative expression of bone matrix genes that may play an important role in bone development and metabolism. alpha 1(I)-collagen, alkaline phosphatase, osteonectin, biglycan (PgI), decorin (PgII), osteopontin, and bone sialoprotein mRNA gene expression were measured on days 0, 2, 6, 10, and 20 (date when the cells were placed in mineralization medium as day 0). Total RNA was purified and analyzed by northern blot using radiolabeled cDNA encoding these genes. To comprehend the relationship between gene expression and mineralization, total calcium content in the cultures was also measured. During the culture period we observed several very different gene expression profiles. The expression of both alpha 1(I)-collagen and biglycan increased 3- to 4-fold by day 6 and then returned to basal levels by day 20. The osteonectin gene was highly expressed throughout the culture, with no significant increase in induction found during any time of culture. A significant induction of alkaline phosphatase (13.8-fold) gene expression was observed by day 6. Osteopontin showed a similar profile to that of alkaline phosphatase but had a much greater level of relative expression (26-fold) compared to day 0. Interestingly, downregulation during mineral accumulation seemed a common occurrence among many of the genes measured. In contrast, the bone sialoprotein gene showed a significant and distinct expression pattern, increasing rapidly after the onset of mineralization on day 6 and ultimately reaching 140-fold that of day 0. Decorin (Pg II) showed an increasing pattern, with the final relative level of induction 5-fold on day 20. These data suggest that the development of the mature osteoblastic phenotype, complete with the ability to produce a thick mineralized matrix, requires the differential regulation of a series of genes and their gene products over the culture period.

Alkaline Phosphatase

The isolation and primary culture of putative human root odontoblasts.

The use of procedures adapted from a routinely successful method of culturing bovine bone has led to the first system for the study of dentinogenesis in vitro. Two types of cells have been grown from pulp obtained from the growing root tips of impacted third molars extracted from 14- to 19-years olds: (1) epithelial-like cells that are probably derived from fragments of the epithelial root sheath and (2) odontoblast-like cells. The cultured epithelial-like cells grow out in distinctive rounded plaques while the odontoblast-like cells are tethered to and/or grow on top of the epithelial-like cells. The odontoblast-like cells produce mineralized matrix by 10 days when cultured on a defined mineralization formula containing conditioned medium obtained from fetal bovine bone cell cultures. Growth factors in this conditioned medium are important to cell proliferation and growth and to the synthesis of mineralized matrix. Sequential enzyme digestion in dispase and dispase/collagenase in serum-free Dulbecco's Modified Eagle's Medium is essential to obtaining adequate cell yields from the apical 3-5 mm of the developing root. Reduction of the number of fibroblasts by treating cultures with dispase in Tyrode's solution midway through the initial growth period enhances the purity of these cell cultures.

Adolescent

A simple method using alizarin red S for the detection of calcium in epoxy resin embedded tissue.

This report presents a simple procedure for staining 1-2 microns epoxy plastic sections of cells and mineralizing matrix present in fetal bovine bone tissue cultures. A 0.3% aqueous toluidine blue O solution was used as a cellular stain and was followed with 2% alizarin red S for the detection of calcium at sites of mineralization. Effects of concentration and pH of alizarin red S on the penetration of epon embedded thick sections were investigated. Optimal staining was achieved with a 2% aqueous alizarin red S solution adjusted to a pH of 5.5-6.5. This staining procedure provides unusually clear contrast between mineral and bone cells in plastic sections for light microscopy.

Animals

Isoproterenol-induced changes in glutathione metabolism in the rat parotid gland.

Rat parotid glands were removed at timed intervals after intraperitoneal injection of isoproterenol (IPR). Reduced/oxidized glutathione ratios, glutathione peroxidase, glutathione reductase and amylase activities were determined. Parotid gland amylase content fell to less than 5 per cent of control values within 1 h after IPR, then slowly returned to control levels by 24 h. The ratio of reduced/oxidized glutathione was decreased at 2 h after IPR injection, returned to near control values at 6 h, then increased above control levels at 9, 12 and 24 h. Glutathione peroxidase activity was increased only at 12 h after injection of IPR, whereas glutathione reductase activity initially decreased, then reached peak values at 12 h. These results indicate that alterations in metabolic activity during the secretory cycle are accompanied by changes in the reduced/oxidized glutathione ratio and the activity of glutathione-metabolizing enzymes. Cellular events contributing to these alterations in glutathione metabolism may include exocytosis, endocytosis and membrane recycling, increased amino-acid transport and resynthesis of secretory proteins.

Amylases

Fetal bovine bone cells synthesize bone-specific matrix proteins.

We isolated cells from both calvaria and the outer cortices of long bones from 3- to 5-mo bovine fetuses. The cells were identified as functional osteoblasts by indirect immunofluorescence using antibodies against three bone-specific, noncollagenous matrix proteins (osteonectin, the bone proteoglycan, and the bone sialoprotein) and against type 1 collagen. In separate experiments, confluent cultures of the cells were radiolabeled and shown to synthesize and secrete osteonectin, the bone proteoglycan and the bone sialoprotein by immunoprecipitation and fluorography of SDS polyacrylamide gels. Analysis of the radiolabeled collagens synthesized by the cultures showed that they produced predominantly (approximately 94%) type I collagen, with small amounts of types III and V collagens. In agreement with previous investigators who have employed the rodent bone cell system, we confirmed in bovine bone cells that (a) there was a typical cyclic AMP response to parathyroid hormone, (b) freshly isolated cells possessed high levels of alkaline phosphatase, which diminished during culture but returned to normal levels in mineralizing cultures, and (c) cells grown in the presence of ascorbic acid and beta-glycerophosphate rapidly produced and mineralized an extracellular matrix containing largely type I collagen. These results show that antibodies directed against bone-specific, noncollagenous proteins can be used to clearly identify bone cells in vitro.

Alkaline Phosphatase

Matrix sialoprotein of developing bone.

Using nondegradative isolation procedures, we purified and characterized a glycoprotein from fetal calf bone that is rich in sialic acid. This bone sialoprotein (BSP) has an apparent Mr = 70,000-80,000 and stains with Alcian blue and Stains All on sodium dodecyl sulfate gels but does not stain with Coomassie blue without prior treatment with neuraminidase. This glycoprotein contains 50% protein, 12% sialic acid, 7% glucosamine, and 6% galactosamine. Fetal calf BSP is rich in glutamate (19%), aspartate (15.4%), and glycine (11.8%) but, in contrast to osteonectin and the bone proteoglycan, has relatively low amounts of leucine (4.3%). Antisera raised against fetal calf BSP localized the glycoprotein by indirect immunofluorescence to developing bone trabeculae with an overall tissue distribution identical with that of osteonectin. On competition enzyme-linked immunosorbent assay analysis, BSP was 11.5% (+/-2.4%, S.E.) of mineral-bound (guanidine-EDTA-soluble) calf bone protein. Immunoreplicas (Western blots) of calf bone extracts suggest that more than 95% of the antigenicity resided in the Mr = 70,000-80,000 region with the remaining cross-reactivity in Alcian blue positive, Mr = approximately 20,000 and approximately 30,000 bands. Brief treatment of the Mr = 70,000-80,000 species with trypsin produced lower molecular weight, Alcian blue-staining products of similar size. No BSP was detected in guanidine extracts of various soft or unmineralized connective tissues, but dentin contained small amounts (0.4%) of the protein. Rat and fetal human bone were also observed to contain a sialoprotein with similar properties and a certain degree of cross-reactivity with the bovine BSP.

Amino Acids

Proteoglycans of developing bone.

We purified and characterized the bone proteoglycans from fetal calves, growing rats, and human fetuses. The major proteoglycan is part of the mineralized tissue matrix and only 10-20% can be extracted prior to demineralization. This bone proteoglycan is a small glycoconjugate (Mr = 80,000-120,000) containing approximately 20-30% protein and either one or two chondroitin sulfate chains (Mr = 40,000) attached to a relatively monodisperse protein core (Mr = 38,000). "O"-linked and "N"-linked oligosaccharide units are also present. Antibodies directed against the protein core of calf bone proteoglycan do not cross-react with cartilage, skin, corneal, or basement membrane proteoglycans in immunoassays and have minimal cross-reactivity with scleral proteoglycans. Quantitative immunoassays and indirect immunofluorescence were used to show that the molecule is localized to forming bone trabeculae and dentin, but not to any other tissue. Osteoblasts and osteoprogenitor cells adjacent to areas undergoing rapid osteogenesis also contain this small proteoglycan. A second proteoglycan (Mr approximately equal to 1,000,000) was extracted from newly forming bone prior to demineralization. This large proteoglycan, which was isolated from the cartilage-free areas of developing intramembranous bone, has a protein core similar to that of the cartilage aggregating proteoglycan and cross-reacts with antisera raised against these cartilage proteoglycans but not with the small mineral-entrapped proteoglycan. It contains larger (Mr = 40,000) and fewer chondroitin sulfate chains than its cartilage-derived analogue, and is localized to the soft connective tissue mesenchyme lying between growing bone trabeculae. More fully formed compact bone did not contain detectable quantities of this proteoglycan.

Animals

Osteonectin, a bone-specific protein linking mineral to collagen.

Osteonectin is a 32,000 dalton bone-specific protein that binds selectively to both hydroxyapatite and collagen. When osteonectin is bound to insolubilized type I collagen, the resultant complex binds synthetic apatite crystals and free calcium ions. The osteonectin-collagen complexes also nucleate mineral phase deposition from metastable balanced salt solutions, Antibodies to osteonectin cross-react with bone and, to a lesser extent, dentin, but not with other tissues. The protein is localized to mineralized bone trabeculae and occurs at higher levels in the matrix than in the cells of bone. These studies suggest that osteonectin is a tissue-specific protein, linking the bone mineral and collagen phases, perhaps initiating active mineralization in normal skeletal tissue.

Animals

A tetracycline study of cyclic longitudinal bone growth in the female rat.

This study shows that bone growth in the young female rat is cyclic. Using tetracycline labeling, measurements were taken for every possible 2-day growth interval during the 4-day estrous cycle. The slow phase of bone growth occurs when estrogen and glucocorticoid serum levels are elevated, whereas the rapid phase of growth occurs when estrogen serum levels are minimal. Parathyroidectomy or 1-microgram injections of exogeneous 17 beta-estradiol retard the rapid phase of growth. Adrenalectomy alters the rate of growth in that the slow phase no longer occurs but rather increases to a rate equal to the rapid phase. The results show that parathyroid hormone is an essential component of the cyclic growth pattern in the young adult female rat and that estrogen, which reduces the rate of longitudinal bone growth, has its effect primarily through its stimulation of glucocorticoid production. These findings are discussed in relation to other recent studies which show that there are no estrogen receptors in bone and that high levels of estrogen stimulate 1,25-dihydroxyvitamin D3 production in the kidney. A hypothetical model, interrelating these hormones to the cyclic longitudinal bone growth pattern found in the female rat, is proposed.

Adrenalectomy