Human embryonic stem cells express an immunogenic nonhuman sialic acid
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- 30 January 2005
- journal article
- technical report
- Published by Springer Nature in Nature Medicine
- Vol. 11 (2), 228-232
- https://doi.org/10.1038/nm1181
Abstract
Human embryonic stem cells (HESC) can potentially generate every body cell type, making them excellent candidates for cell- and tissue-replacement therapies. HESC are typically cultured with animal-derived 'serum replacements' on mouse feeder layers. Both of these are sources of the nonhuman sialic acid Neu5Gc, against which many humans have circulating antibodies. Both HESC and derived embryoid bodies metabolically incorporate substantial amounts of Neu5Gc under standard conditions. Exposure to human sera with antibodies specific for Neu5Gc resulted in binding of immunoglobulin and deposition of complement, which would lead to cell killing in vivo. Levels of Neu5Gc on HESC and embryoid bodies dropped after culture in heat-inactivated anti-Neu5Gc antibody–negative human serum, reducing binding of antibodies and complement from high-titer sera, while allowing maintenance of the undifferentiated state. Complete elimination of Neu5Gc would be likely to require using human serum with human feeder layers, ideally starting with fresh HESC that have never been exposed to animal products.Keywords
This publication has 28 references indexed in Scilit:
- Culture and Characterization of Human Embryonic Stem CellsStem Cells and Development, 2004
- Derivation, propagation and differentiation of human embryonic stem cellsThe International Journal of Biochemistry & Cell Biology, 2004
- Cultures of human embryonic stem cells: serum replacement medium or serum-containing media and the effect of basic fibroblast growth factorReproductive BioMedicine Online, 2004
- Characterization and Differentiation of Human Embryonic Stem CellsCloning and Stem Cells, 2003
- Stem cell medicine encounters the immune systemNature Reviews Immunology, 2002
- Clonally Derived Human Embryonic Stem Cell Lines Maintain Pluripotency and Proliferative Potential for Prolonged Periods of CultureDevelopmental Biology, 2000
- New tools for human developmental biologyNature Biotechnology, 2000
- Differentiation of Human Embryonic Stem Cells into Embryoid Bodies Comprising the Three Embryonic Germ LayersMolecular Medicine, 2000
- Human embryonic stem cells: The future is nowNature Medicine, 1999
- Embryonic Stem Cell Lines Derived from Human BlastocystsScience, 1998