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Osteoblastic phenotype of rat marrow stromal cells cultured in the presence of dexamethasone, beta-glycerolphosphate, and L-ascorbic acid

Authors :
Peter, S. J
Liang, C. R
Kim, D. J
Widmer, M. S
Mikos, A. G
McIntire, L. V
Source :
Journal of cellular biochemistry. 71(1)
Publication Year :
1998
Publisher :
United States: NASA Center for Aerospace Information (CASI), 1998.

Abstract

We investigated the effects of the time course of addition of osteogenic supplements dexamethasone, beta-glycerolphosphate, and L-ascorbic acid to rat marrow stromal cells, and the exposure time on the proliferation and differentiation of the cells. It was the goal of these experiments to determine the time point for supplement addition to optimize marrow stromal cell proliferation and osteoblastic differentiation. To determine this, two studies were performed; one study was based on the age of the cells from harvest, and the other study was based on the duration of exposure to supplemented medium. Cells were seen to proliferate rapidly at early time points in the presence and absence of osteogenic supplements as determined by 3H-thymidine incorporation into the DNA of replicating cells. These results were supported by cell counts ascertained through total DNA analysis. Alkaline phosphatase (ALP) activity and osteocalcin production at 21 days were highest for both experimental designs when the cells were exposed to supplemented medium immediately upon harvest. The ALP levels at 21 days were six times greater for cells maintained in supplements throughout than for control cells cultured in the absence of supplements for both studies, reaching an absolute value of 75 x 10(-7) micromole/min/cell. Osteocalcin production reached 20 x 10(-6) ng/cell at 21 days in both studies for cells maintained in supplemented medium throughout the study, whereas the control cells produced an insignificant amount of osteocalcin. These results suggest that the addition of osteogenic supplements to marrow-derived cells early in the culture period did not inhibit proliferation and greatly enhanced the osteoblastic phenotype of cells in a rat model.

Subjects

Subjects :
Aerospace Medicine

Details

Language :
English
ISSN :
07302312
Volume :
71
Issue :
1
Database :
NASA Technical Reports
Journal :
Journal of cellular biochemistry
Notes :
R01-AR44381, , R29-AR41639, , 5T32GM08362
Publication Type :
Report
Accession number :
edsnas.20040172571
Document Type :
Report
Full Text :
https://doi.org/10.1002/(SICI)1097-4644(19981001)71:1<55::AID-JCB6>3.0.CO;2-0