Method for isolating a self-renewing, multipotent, slow-cycling cell
The present invention relates to methods for isolating infrequently-dividing, slow-cycling cells, a feature which is typical of stem cells in their niche. The methods of the present invention are advantageously used as classical stem cells can be isolated. Further provided are methods for generating clonal populations and inhibiting the differentiation of these cells. In addition markers for distinguishing these cells from progenitor cells are also disclosed.
1. A method for isolating a self-renewing, multipotent, slow-cycling cell comprising obtaining a population of cells from a sample and sorting the population of cells based on the presence of CD34 and the amount of a selected slow-cycling cell marker expressed by each cell, so that a self-renewing, multipotent, slow-cycling cell is isolated, wherein the selected slow-cycling cell marker is selected from the group of Transcription Factor 3, Transcription Factor 4, Alpha 6 Integrin, G-Protein-Coupled Receptor 49 and Bone Morphogenetic Protein Receptor 1A.