Abstract
Fibrinogen synthesis was investigated in cultures of chicken embryo hepatocytes initiated and maintained in chemically defined, serum-free medium. 11-Hydroxy glucocorticoids caused a 3-fold stimulation of fibrinogen synthesis. Half-maximal stimulation was achieved with 1 nM corticosterone or hydrocortisone, as compared with only 0.1 nM dexamethasone. Increased fibrinogen production in the presence of these glucocorticoids was characterized by a 4-hr delay in onset, a sensitivity to actinomycin D, and a requirement for the continuous presence of the steroid. Crossed immunoelectrophoresis permitted analysis of the simultaneous effects of glucocorticoids on the synthesis of more than 20 plasma proteins secreted in culture. The absence of an effect on the synthesis of most of these proteins was in sharp contrast to the 3-fold increase in fibrinogen production. Sera from a variety of animals also stimulated an increase in fibrinogen synthesis that was similar in degree but less specific than that due to glucocorticoids and that partially masked the response of the cells to the steroid hormones. The presence of an anticoagulant in the medium was found to be necessary for detection of the fibrinogen secreted in culture. Although insulin was routinely included in the chemically defined medium, the cells synthesized fibrinogen and responded to glucocorticoids in the absence of hormonal supplementation of the medium. These findings are consistent with the thesis that variations in glucocorticoid levels contribute to the regulation of fibrinogen production in the intact animal.
MeSH Terms
Animals
Blood Proteins/biosynthesis
Cells, Cultured
Chick Embryo
Dexamethasone/pharmacology
Fibrinogen/biosynthesis
Glucocorticoids/pharmacology
Heparin/pharmacology
Hydrocortisone/pharmacology
Immunoelectrophoresis, Two-Dimensional
Liver/drug effects,metabolism
Chemicals
Blood Proteins
Glucocorticoids
Dexamethasone
Fibrinogen
Heparin
Hydrocortisone
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Grieninger G
Hertzberg K M
Pindyck J
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