Cell fusion-independent differentiation of neural stem cells to the endothelial lineage
- 1 July 2004
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 430 (6997) , 350-356
- https://doi.org/10.1038/nature02604
Abstract
Somatic stem cells have been claimed to possess an unexpectedly broad differentiation potential (referred to here as plasticity) that could be induced by exposing stem cells to the extracellular developmental signals of other lineages in mixed-cell cultures1,2,3,4,5,6. Recently, this and other experimental evidence supporting the existence of stem-cell plasticity have been refuted because stem cells have been shown to adopt the functional features of other lineages by means of cell-fusion-mediated acquisition of lineage-specific determinants (chromosomal DNA) rather than by signal-mediated differentiation1,2,5,7,8. In this study we co-cultured mouse neural stem cells (NSCs), which are committed to become neurons and glial cells9,10, with human endothelial cells, which form the lining of blood vessels11. We show that in the presence of endothelial cells six per cent of the NSC population converted to cells that did not express neuronal or glial markers, but instead showed the stable expression of multiple endothelial markers and the capacity to form capillary networks. This was surprising because NSCs and endothelial cells are believed to develop from the ectoderm and mesoderm, respectively. Experiments in which endothelial cells were killed by fixation before co-culture with live NSCs (to prevent cell fusion) and karyotyping analyses, revealed that NSCs had differentiated into endothelial-like cells independently of cell fusion. We conclude that stem-cell plasticity is a true characteristic of NSCs and that the conversion of NSCs to unanticipated cell types can be accomplished without cell fusion.Keywords
This publication has 29 references indexed in Scilit:
- Transplanted bone marrow regenerates liver by cell fusionNature, 2003
- Cell fusion is the principal source of bone-marrow-derived hepatocytesNature, 2003
- Differentiation, cell fusion, and nuclear fusion during ex vivo repair of epithelium by human adult stem cells from bone marrow stromaProceedings of the National Academy of Sciences, 2003
- Bone marrow cells adopt the phenotype of other cells by spontaneous cell fusionNature, 2002
- Changing potency by spontaneous fusionNature, 2002
- Cardiomyocytes induce endothelial cells to trans-differentiate into cardiac muscle: Implications for myocardium regenerationProceedings of the National Academy of Sciences, 2001
- Skeletal myogenic potential of human and mouse neural stem cellsNature Neuroscience, 2000
- Vascular niche for adult hippocampal neurogenesisJournal of Comparative Neurology, 2000
- Mechanisms of angiogenesisNature, 1997
- A common progenitor for neurons and glia persists in rat retina late in developmentNature, 1987