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Article
Nature Medicine  8, 268 - 273 (2002)
doi:10.1038/nm0302-268

Hematopoietic competence is a rare property of neural stem cells that may depend on genetic and epigenetic alterations

Cindi M. Morshead1, Patricia Benveniste3, Norman N. Iscove3, 4 & Derek van der Kooy2, 4

1  Department of Surgery, University of Toronto, Toronto, Ontario, Canada

2  Department of Anatomy and Cell Biology, University of Toronto, Toronto, Ontario, Canada

3  The Ontario Cancer Institute and Department of Medical Biophysics, University of Toronto, Toronto, Ontario, Canada

4  N.N.I. and D.v.d.K. contributed equally to this study.

Correspondence should be addressed to Cindi M. Morshead cindi.morshead@utoronto.ca
The concept of stem-cell plasticity received strong support from a recent observation that extensively passaged, clonally derived neural stem cells could contribute to hematopoiesis. We investigated whether hematopoietic potential was a consistent or unusual feature of neural stem cells, and whether it depended on the extent of in vitro passaging before transplantation. Here we transplanted over 128 times 106 neurosphere cells into 128 host animals; however, we never observed contribution to hematopoiesis, irrespective of the number of passages and despite the use of an assay that could detect the contribution of a single blood stem cell to hematopoietic repopulation. Although extensively cultured neurosphere cells continued to generate neural progeny, marked changes in their growth properties occurred, including changes in growth-factor dependence, cell-cycle kinetics, cell adhesion and gene expression. Our results exclude hematopoietic competence as a consistent property of intravenously infused neural stem cells. However, the consistent changes that occurred during extended passaging are compatible with genetic or epigenetic alterations and suggest that rare transformation events may account for the neural-to-blood fate switch originally reported.

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REFERENCE
Oligodendrocytes
Nature Encyclopaedia of Life Sciences

REVIEWS
The glial identity of neural stem cells
Nature Neuroscience Review (01 Nov 2003)

NEWS AND VIEWS
Are somatic stem cells pluripotent or lineage-restricted?
Nature Medicine News and Views (01 Mar 2002)
Stem cells: Breaking the brain-blood barrier
Nature News and Views (18 Feb 1999)

RESEARCH
Hematopoietic potential of neural stem cells
Nature Medicine Letters to Editor (01 Jun 2002)
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Nature Medicine
ISSN: 1078-8956
EISSN: 1546-170X
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