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PMID: 18356248 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Neural stem cells: balancing self-renewal with differentiation.

Development (Cambridge, England) ·Vol. 135 ·No. 9 ·2008-05-00 ·Pages 1575-87

Doe CQ

Abstract

Stem cells are captivating because they have the potential to make multiple cell types yet maintain their undifferentiated state. Recent studies of Drosophila and mammalian neural stem cells have shed light on how stem cells regulate self-renewal versus differentiation and have revealed the proteins, processes and pathways that all converge to regulate neural progenitor self-renewal. If we can better understand how stem cells balance self-renewal versus differentiation, we will significantly advance our knowledge of embryogenesis, cancer biology and brain evolution, as well as the use of stem cells for therapeutic purposes.

MeSH Terms
Animals Cell Differentiation/physiology Cell Lineage/physiology Cell Polarity/physiology Drosophila/cytology,physiology Drosophila Proteins/physiology Juvenile Hormones/physiology Mice Neurons/cytology,physiology Spindle Apparatus/physiology Stem Cells/cytology,physiology
Chemicals
Drosophila Proteins Juvenile Hormones numb protein, Drosophila
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Doe Chris Q
Howard Hughes Medical Institute, Institute of Neuroscience, Institute of Molecular Biology, University of Oregon, Eugene, OR, USA. cdoe@uoregon.edu
Article Info
Journal
Development (Cambridge, England)
Abbr.
Development
ISSN
0950-1991
Published
2008-05-00
Epub
2008-00-20
Pages
1575-87
Language
English
Region
England
NLM ID
8701744
Subset
IM
Grants
NICHD NIH HHS · R01 HD027056-16 · United States
Howard Hughes Medical Institute · United States
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