Low O 2 tensions and the prevention of differentiation of hES cells
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- 16 March 2005
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 102 (13) , 4783-4788
- https://doi.org/10.1073/pnas.0501283102
Abstract
Early-stage mammalian embryos develop in a low O(2) environment (hypoxia). hES cells, however, are generally cultured under an atmosphere of 21% O(2) (normoxia), under which conditions they tend to differentiate spontaneously. Such conditions may not be the most suitable, therefore, for hES cell propagation. Here we have tested two hypotheses. The first hypothesis was that hES cells would grow as well under hypoxic as under normoxic conditions. The second hypothesis was that hypoxic culture would reduce the amount of spontaneous cell differentiation that occurs in hES colonies. Both hypotheses proved to be correct. Cells proliferated as well under 3% and 5% O(2) as they did under 21% O(2), and growth was only slightly reduced at 1% O(2). The appearance of differentiated regions as assessed morphologically, biochemically (by the production of human chorionic gonadotropin and progesterone), and immunohistochemically (by the loss of stage-specific embryonic antigen-4 and Oct-4 and gain of stage-specific embryonic antigen-1 marker expression) was markedly reduced under hypoxic conditions. In addition, hES cell growth under hypoxia provided enhanced formation of embryoid bodies. Hypoxic culture would appear to be necessary to maintain full pluripotency of hES cells.Keywords
This publication has 46 references indexed in Scilit:
- Oxygen-Regulated Gene Expression in Bovine Blastocysts1Biology of Reproduction, 2004
- Derivation of Embryonic Stem-Cell Lines from Human BlastocystsNew England Journal of Medicine, 2004
- Unique gene expression signatures of independently-derived human embryonic stem cell linesHuman Molecular Genetics, 2004
- Comment on " 'Stemness': Transcriptional Profiling of Embryonic and Adult Stem Cells" and "A Stem Cell Molecular Signature" (I)Science, 2003
- Comment on " 'Stemness': Transcriptional Profiling of Embryonic and Adult Stem Cells" and "A Stem Cell Molecular Signature" (II)Science, 2003
- Preimplantation Human Embryos and Embryonic Stem Cells Show Comparable Expression of Stage‐Specific Embryonic AntigensThe International Journal of Cell Cloning, 2002
- Hypoxia-inducible factor-1 mediates the biological effects of oxygen on human trophoblast differentiation through TGFβ3Journal of Clinical Investigation, 2000
- Embryonic Stem Cell Lines Derived from Human BlastocystsScience, 1998
- Hypoxia alters early gestation human cytotrophoblast differentiation/invasion in vitro and models the placental defects that occur in preeclampsia.Journal of Clinical Investigation, 1996
- Myeloid leukaemia inhibitory factor maintains the developmental potential of embryonic stem cellsNature, 1988