Phenotypic and functional comparison of cultures of marrow-derived mesenchymal stem cells (MSCs) and stromal cells
- 1 July 1998
- journal article
- research article
- Published by Wiley in Journal of Cellular Physiology
- Vol. 176 (1) , 57-66
- https://doi.org/10.1002/(sici)1097-4652(199807)176:1<57::aid-jcp7>3.0.co;2-7
Abstract
Mesenchymal stem cells (MSCs) are a population of pluripotent cells within the bone marrow microenvironment defined by their ability to differentiate into cells of the osteogenic, chondrogenic, tendonogenic, adipogenic, and myogenic lineages. We have developed methodologies to isolate and culture-expand MSCs from human bone marrow, and in this study, we examined the MSC's role as a stromal cell precursor capable of supporting hematopoietic differentiation in vitro. We examined the morphology, phenotype, and in vitro function of cultures of MSCs and traditional marrow-derived stromal cells (MDSCs) from the same marrow sample. MSCs are morphologically distinct from MDSC cultures, and flow cytometric analyses show that MSCs are a homogeneous cell population devoid of hematopoietic cells. RT-PCR analysis of cytokine and growth factor mRNA in MSCs and MDSCs revealed a very similar pattern of mRNAs including IL-6, -7, -8, -11, -12, -14, and -15, M-CSF, Flt-3 ligand, and SCF. Steady-state levels of IL-11 and IL-12 mRNA were found to be greater in MSCs. Addition of IL-1alpha induced steady-state levels of G-CSF and GM-CSF mRNA in both cell preparations. In contrast, IL-1alpha induced IL-1alpha and LIF mRNA levels only in MSCs, further emphasizing phenotypic differences between MSCs and MDSCs. In long-term bone marrow culture (LTBMC), MSCs maintained the hematopoietic differentiation of CD34+ hematopoietic progenitor cells. Together, these data suggest that MSCs represent an important cellular component of the bone marrow microenvironment.Keywords
This publication has 36 references indexed in Scilit:
- Monoclonal antibodies reactive with human osteogenic cell surface antigensBone, 1997
- IL-1? and TNF? act synergistically to stimulate production of myeloid colony-stimulating factors by cultured human bone marrow stromal cells and cloned stromal cell strainsJournal of Cellular Physiology, 1994
- Support of human cord blood progenitor cells on human stromal cell lines transformed by SV40 large T antigen under the influence of an inducible (metallothionein) promoterBlood, 1992
- Regulation of B cell differentiation by bone marrow stromal cellsThe International Journal of Cell Cloning, 1992
- Mesenchymal stem cellsJournal of Orthopaedic Research, 1991
- Mechanisms that regulate the cell cycle status of very primitive hematopoietic cells in long-term human marrow cultures. II. Analysis of positive and negative regulators produced by stromal cells within the adherent layerBlood, 1991
- Regulation of Hemopoiesis by Bone Marrow Stromal Cells and Their ProductsAnnual Review of Immunology, 1990
- Long-term culture of human bone marrow cells.Proceedings of the National Academy of Sciences, 1980
- Isolation of biologically active ribonucleic acid from sources enriched in ribonucleaseBiochemistry, 1979
- Conditions controlling the proliferation of haemopoietic stem cells in vitroJournal of Cellular Physiology, 1977