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Functional module analysis reveals differential osteogenic and stemness potentials in human mesenchymal stem cells from bone marrow and Wharton's jelly of umbilical cord.
- Source :
-
Stem cells and development [Stem Cells Dev] 2010 Dec; Vol. 19 (12), pp. 1895-910. Date of Electronic Publication: 2010 Oct 12. - Publication Year :
- 2010
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Abstract
- Mesenchymal stem cells (MSCs) found in bone marrow (BM)-MSCs are an attractive source for the regeneration of damaged tissues. Alternative postnatal, perinatal, and fetal sources of MSCs are also under intensive investigation. MSCs from the Wharton's jelly matrix of umbilical cord (WJ)-MSCs have higher pancreatic and endothelial differentiation potentials than BM-MSCs, but the underlying mechanisms are poorly understood. We compared the gene expression profiles, enriched canonical pathways, and genetic networks of BM-MSCs and WJ-MSCs. WJ-MSCs express more angiogenesis- and growth-related genes including epidermal growth factor and FLT1, whereas BM-MSCs express more osteogenic genes such as RUNX2, DLX5, and NPR3. The gene expression pattern of BM-MSCs is more similar to osteoblasts than WJ-MSCs, suggesting a better osteogenic potential. In contrast, WJ-MSCs are more primitive because they share more common genes with embryonic stem cells. BM-MSCs are more sensitive to environmental stimulations because their molecular signatures altered more significantly in different culture conditions. WJ-MSCs express genes enriched in vascular endothelial growth factor and PI3K-NFκB canonical pathways, whereas BM-MSCs express genes involved in antigen presentation and chemokine/cytokine pathways. Drylab results could be verified by wetlab experiments, in which BM-MSCs were more efficient in osteogenic and adipogenic differentiation, whereas WJ-MSCs proliferated better. WJ-MSCs thus constitute a promising option for angiogenesis, whereas BM-MSCs in bone remodeling. Our results reveal systematically the underlying genes and regulatory networks of 2 MSCs from unique ontological and anatomical origins, as well as the resulted phenotypes, thereby providing a better basis for cell-based therapy and the following mechanistic studies on MSC biology.
- Subjects :
- Antigen Presentation genetics
Bone Remodeling physiology
Cells, Cultured
Chemokines genetics
Cytokines genetics
Embryonic Stem Cells cytology
Flow Cytometry
Fluorescent Antibody Technique
Gene Expression Profiling
Gene Regulatory Networks
Humans
Immunoblotting
Intercellular Signaling Peptides and Proteins genetics
Mesenchymal Stem Cells cytology
NF-kappa B genetics
Neovascularization, Physiologic genetics
Phosphatidylinositol 3-Kinases genetics
Polymerase Chain Reaction
Stromal Cells cytology
Stromal Cells physiology
Umbilical Cord physiology
Vascular Endothelial Growth Factor A genetics
Bone Marrow Cells
Mesenchymal Stem Cells physiology
Osteogenesis genetics
Umbilical Cord cytology
Subjects
Details
- Language :
- English
- ISSN :
- 1557-8534
- Volume :
- 19
- Issue :
- 12
- Database :
- MEDLINE
- Journal :
- Stem cells and development
- Publication Type :
- Academic Journal
- Accession number :
- 20367285
- Full Text :
- https://doi.org/10.1089/scd.2009.0485