Methods in molecular biology · 2011 · 56 citations · 17 references
Stem cell culture systems that rely on undefined animal-derived components introduce variability to the cultures and complicate their therapeutic use. The derivation of human embryonic stem cells and the development of methods to produce induced pluripotent stem cells combined with their potential to treat human diseases have accelerated the drive to develop xenogenic-free, chemically defined culture systems that support pluripotent self-renewal and directed differentiation. In this chapter, we describe four xeno-free culture systems that have been successful in supporting undifferentiated growth of hPSCs as well as methods for xeno-free subculture and cryopreservation of hPSCs. Each culture system consists of a xeno-free growth medium and xeno-free substratum: (1) TeSR2™ with human recombinant laminin (LN-511); (2) NutriStem™ with LN-511; (3) RegES™ with human foreskin fibroblasts (hFFs); (4) KO-SR Xeno-Free™/GF cocktail with CELLstart™ matrix.
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Embryonic Stem Cell Lines Derived from Human Blastocysts
James A. Thomson, Joseph Itskovitz‐Eldor, Sander S. Shapiro et al. · Science · 1998 · 15.8K citations
Telomerase Activity, Adult Stem Cell, Biomedical Engineering +16
Induced Pluripotent Stem Cell Lines Derived from Human Somatic Cells
Junying Yu, Maxim A. Vodyanik, Kim Smuga-Otto et al. · Science · 2007 · 10.2K citations
Tissue Engineering, Adult Stem Cell, Transplantation Medicine +18
A ROCK inhibitor permits survival of dissociated human embryonic stem cells
Kiichi Watanabe, Morio Ueno, Daisuke KAMIYA et al. · Nature Biotechnology · 2007 · 2.1K citations