[Proteoglycans in human gingival fibroblasts under the effect of estradiol and progesterone].
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Biomedical subjects
Publications and source records attributed to C Lemmen.
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The hormonal regulation of precursor incorporation into cellular lipids has been investigated in human lymphocytes stimulated with phytohemeagglutinine. Addition of thyroxine (5 micrograms/ml) for 72 h increased incorporation of [14C]acetate into the triacylglycerol fraction to 290% above the hormone-free control values. Incorporation into the cholesterol fraction was elevated up to 188% under the same conditions. Triiodothyronine was less effective than thyroxine: maximal effects were 153% of the control for triacylglycerols and 142% for cholesterol. Similar results were obtained when [14C]palmitic acid was used as a precursor for triacylglycerol synthesis. Effects of insulin on the parameters described were less pronounced than those obtained with thyroid hormones. Cellular triacylglycerol and protein contents were not elevated significantly by thyroid hormone addition. Further, incorporation of labelled thymidine, uridine, and leucine into acid-precipitable products was not elevated by triiodothyronine above mitogen-stimulated levels. It is concluded, that rapidly dividing lymphocytes provide a suitable system for studies concerning human lipid metabolism.
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The hormonal regulation of two regulatory enzymes of fatty acid synthesis acetyl-CoA carboxylase (EC 6.4.1.2) and glucose-6-phosphate dehydrogenase (EC 1.1.1.49), has been investigated in human diploid fibroblasts. There was a 35% increase in acetyl-CoA carboxylase activity, 72 h following addition of 10 microU/ml insulin to the culture medium. Addition of 1 microgram/ml of 3,3'5-triiodothyronine for 72 h resulted in an increase in acetyl-CoA carboxylase activity to 166% of the controls. The simultaneous addition of 1 microgram/ml triiodothyronine and 10 mU/ml insulin caused the enzyme activity to rise to 240% of the controls. A dose-dependent reduction in acetyl-CoA carboxylase activity was brought about by 1 X 10(-4) to 1 X 10(-3) M dibutyryl cyclic AMP. The earliest effect of dibutyryl cyclic AMP was observed within 24 h. Glucose-6-phosphate dehydrogenase followed qualitatively the same pattern of response, whereas the constitutive enzyme, lactate dehydrogenase (EC 1.1.1.27), did not show significant changes in these experiments. The data demonstrate common features of hormonal regulation of lipogenesis in human fibroblasts with liver and adipose tissue and substantiate the growing evidence that thyroid hormones are of major importance for the regulation of this process.
Lipogenesis has been investigated in diploid fibroblasts derived from patients with familial hypertriglyceridaemia (FHT) and compared with cells from healthy persons. There was no difference in acetyl-CoA carboxylase activity in both cell types. Incorporation of [2-14C]-acetate into triglyceride fatty acids was slightly increased (34%) by the FHT lines. Addition of triiodothyronine caused a marked rise in [2-14C]-acetate incorporation by the FHT lines whereas the normal lines exhibited only control values. Maximal rise in [2-14C]-acetate incorporation was obtained with 5 micrograms/ml for 72 h. Under these conditions, acetate incorporation by the FHT lines was 220% of the controls, compared with 94% by the normal lines. Measurements of acetyl-CoA carboxylase specific activity supported the results obtained with measurements of acetate incorporation into triglyceride fatty acids. Individual FHT lines differ much in their quantitative answer to thyroid hormones, although the described effects were obtained with all eight lines under study. Insulin increased acetyl-CoA carboxylase activity and incorporation of [2-14C]-acetate in lipids in both cell types, but with no difference between normal and FHT lines. The results seem to reflect a higher lipogenic capacity of the hypertriglyceridaemic fibroblasts compared with normal cells.
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Synthesis of collagen by chondrocytes was studied by immunofluorescence using antibodies specific for type I, II and III collagen. The following tissues and culture conditions were chosen for this immunohistological study: normal articular cartilage, epiphyseal growth cartilage, cartilage undergoing osteoarthrotic degeneration, suspension culture and monolayer culture. While type II collagen is the unique collagen all over hyaline cartilage, type I collagen is produced by hypertrophic chondrocytes in the growth plate. In addition, chondrocytes in osteoarthrotic areas of articular cartilage synthesize type I collagen. Under in vitro culture conditions, chondrocytes initially product type II collagen and synthesize later on type I collagen. The change of synthesis from type II to type I collagen is more rapid in monolayer than in suspension culture. It is concluded that the presence of matrix compounds and the cellmatrix interaction as well are necessary to maintain synthesis of type II collagen in chondrocytes. Alterations in the cell-matrix interactions are shown to occur in the hypertrophic zone of the epiphyseal growth plate, in cartilage undergoing osteoarthrotic degeneration as well as in chondrocytes grown in culture. Thus, change in the control of gene activity may subsequently lead to change in collagen synthesis. It is possible that the synthesis of type I collagen, which cannot fulfil the physiological function of a structural element in cartilageneous tissue, is a crucial factor in the process of osteoarthrosis.
Fibroblasts derived from skin biopsies of a patient with a congenital defect of connective tissue revealed a disturbance in collagen synthesis. The defect was found in the mechanism that controls the type of collagen synthesized. Biochemical data as well as evaluation of immunofluorescent micrographs using collagen type-specific antibodies, suggested that the fibroblasts of this patient synthesized type III collagen, at a time and rate which was not found in fibroblasts from an age-matched healthy individual.
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