Osteogenic differentiation of murine yolk sac mesenchymal stem cells in vitro.
- Author:
Zi-ping ZHAO
1
;
Xiao-dong NA
;
Hui-fang YANG
;
Jiang-nan ZHOU
Author Information
- Publication Type:Journal Article
- MeSH: Alkaline Phosphatase; biosynthesis; Animals; Bone Morphogenetic Proteins; biosynthesis; Cell Differentiation; Cells, Cultured; Female; Mesoderm; cytology; Mice; Osteoblasts; cytology; Osteogenesis; Stem Cells; cytology; Yolk Sac; cytology
- From: Acta Academiae Medicinae Sinicae 2002;24(1):41-44
- CountryChina
- Language:Chinese
-
Abstract:
OBJECTIVETo investigate the potential of yolk sac mesenchymal stem cells in osteogenic differentiation.
METHODSMurine yolk sacs were harvested on day 8.5 postcoitus, yolk sac cells were obtained after the yolk sacs were digested by 0.1% type I collagenase for 1 hour, the non-adherent cells were removed after being cultured for 1 hour. The adherent cells were cultured in DMEM containing of 5 ng/ml bFGF and 15% FBS, and passaged when they became subconfluent. The morphologic characteristics, and AKP, BMP-2, as well as type I, III collagen of the yolk sac adherent cells were observed and tested. The attached cells were treated with 10(-8) mol/L dexamethasone, 10 mmol/L beta-glycerophosphate, and 50 micrograms/ml vitamin C at passage 4. Alternations of morphological characteristic, AKP activity, collagen of type I, III and mineralization were detected.
RESULTSPure mesenchymal stem cells which were of spindle shape, uniform in size, positive in type I, III collagen staining and weak positive in AKP activity could be induced to pleomorphism osteoblast-like cells in vitro. The cells were transformed from spindle shape to polygonal cells which were positive in type I collagen, negative in type III collagen, strong positive in BMP-2, and positive in Von Kossa's stain at week 8. The polygonal cells could form nodular structure and their AKP activity was increased. All these were coincidence with the characters of osteoblast.
CONCLUSIONYolk sac mesenchymal stem cell can be purified and induced to osteoblast in vitro.