Abstract
Somatic cells can be reprogrammed into induced pluripotent stem (iPS) cells by enforced expression of transcription factors. Using serial live imaging of human fibroblasts undergoing reprogramming, we identified distinct colony types that morphologically resemble embryonic stem (ES) cells yet differ in molecular phenotype and differentiation potential. By analyzing expression of pluripotency markers, methylation at the OCT4 and NANOG promoters and differentiation into teratomas, we determined that only one colony type represents true iPS cells, whereas the others represent reprogramming intermediates. Proviral silencing and expression of TRA-1-60, DNMT3B and REX1 can be used to distinguish the fully reprogrammed state, whereas alkaline phosphatase, SSEA-4, GDF3, hTERT and NANOG are insufficient as markers. We also show that reprogramming using chemically defined medium favors formation of fully reprogrammed over partially reprogrammed colonies. Our data define molecular markers of the fully reprogrammed state and highlight the need for rigorous characterization and standardization of putative iPS cells.
MeSH Terms
Cell Differentiation
Cell Line
Cell Shape
Cell Survival
Cellular Reprogramming/genetics
Colony-Forming Units Assay
Embryonic Stem Cells/cytology
Fibroblasts/cytology,metabolism
Flow Cytometry
Fluorescent Antibody Technique
Humans
Imaging, Three-Dimensional/methods
Induced Pluripotent Stem Cells/cytology,metabolism
Teratoma/pathology
Time Factors
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Chan Elayne M
Division of Pediatric Hematology/Oncology, Children's Hospital Boston and Dana-Farber Cancer Institute, Boston, Massachusetts, USA.
Ratanasirintrawoot Sutheera
Park In-Hyun
Manos Philip D
Loh Yuin-Han
Huo Hongguang
Miller Justine D
Hartung Odelya
Rho Junsung
Ince Tan A
Daley George Q
Schlaeger Thorsten M
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