Efficient derivation and genetic modifications of human pluripotent stem cells on engineered human feeder cell lines. [electronic resource]
Producer: 20121211Description: 2298-311 p. digitalISSN:- 1557-8534
- Alkaline Phosphatase -- metabolism
- Animals
- Antigens, Differentiation -- metabolism
- Bone Marrow Cells -- metabolism
- Cell Culture Techniques
- Cell Proliferation
- Cells, Cultured
- Coculture Techniques
- Embryonic Stem Cells -- metabolism
- Feeder Cells -- metabolism
- Female
- Genetic Engineering
- Genetic Loci
- Homologous Recombination
- Humans
- Induced Pluripotent Stem Cells -- metabolism
- Karyotype
- Male
- Mesenchymal Stem Cells -- metabolism
- Mice
- Neoplasms, Experimental -- pathology
- Telomerase -- genetics
- Teratoma -- pathology
- Transduction, Genetic
- Wnt3A Protein -- biosynthesis
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Publication Type: Journal Article; Research Support, N.I.H., Extramural; Research Support, Non-U.S. Gov't
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