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Dose-dependent osteogenic effect of octacalcium phosphate on mouse bone marrow stromal cells.
- Source :
-
Tissue engineering. Part A [Tissue Eng Part A] 2008 Jun; Vol. 14 (6), pp. 965-78. - Publication Year :
- 2008
-
Abstract
- Octacalcium phosphate (OCP) has been advocated to be a precursor of biological apatite crystals in bones and teeth. Our previous studies showed that synthetic OCP stimulates bone regeneration, followed by the progressive conversion of OCP into hydroxyapatite (HA), when implanted in bone defects. However, the precise mechanism to induce the osteogenic phenotype in osteoblasts by OCP has not been identified. The present study was designed to investigate whether the physicochemical aspect, specific to and derived from the structural properties of OCP, influences the function of an osteoblastic cell line, mouse bone marrow stromal ST-2 cells. Different amounts of synthetic OCP and synthetic sintered ceramic HA were coated onto 48-well tissue culture plates. The amounts of OCP and HA were controlled to strengthen their intrinsic physicochemical properties, in which the milieu around the crystals will be modified during the culture. The roughness of the OCP coatings was independent of the amount of coating. Chemical analyses of the supernatants of the OCP coatings revealed that the concentration of Ca2+ decreased with increasing amounts of OCP, while the concentration of inorganic phosphate increased markedly, most probably through OCP--apatite conversion. ST-2 cells were cultured on the OCP or HA coatings up to day 21. The OCP coating caused a significant decrease in cell attachment and in the initial stage of proliferation, dependent upon the amount of coating. On the other hand, OCP enhanced the expression of osteogenic markers, including type I collagen, alkaline phosphatase, and osterix. However, HA did not alter the expression of these markers in ST-2 cells cultured on different amounts of HA coating. These results demonstrated that OCP is capable of inducing the differentiation of stromal cells into osteoblastic cells, especially differentiation into early stage osteoblastic cells, prior to reaching the stage of mature osteoblastic cell lineage.
- Subjects :
- Alkaline Phosphatase metabolism
Animals
Bone Marrow Cells enzymology
Bone Marrow Cells ultrastructure
Calcium metabolism
Cell Adhesion drug effects
Cell Differentiation drug effects
Cell Proliferation drug effects
Coated Materials, Biocompatible pharmacology
Culture Media
Durapatite pharmacology
Gene Expression Regulation drug effects
L-Lactate Dehydrogenase metabolism
Mice
Microscopy, Electron, Scanning
Phosphorus metabolism
Stromal Cells enzymology
Stromal Cells ultrastructure
Surface Properties drug effects
Bone Marrow Cells cytology
Calcium Phosphates pharmacology
Osteogenesis drug effects
Stromal Cells cytology
Stromal Cells drug effects
Subjects
Details
- Language :
- English
- ISSN :
- 1937-3341
- Volume :
- 14
- Issue :
- 6
- Database :
- MEDLINE
- Journal :
- Tissue engineering. Part A
- Publication Type :
- Academic Journal
- Accession number :
- 19230123
- Full Text :
- https://doi.org/10.1089/tea.2007.0339