Stem Cells and Development · 2009 · 354 citations · 37 references
Tissue EngineeringEngineeringAdult Stem CellBiomedical EngineeringInduced Pluripotent StemDental TissuesRegenerative MedicineInduced Pluripotent Stem CellsStem CellsDental Tissue OriginMesenchymal Stem CellCell BiologyInduced Pluripotent Stem CellDevelopmental BiologyDental RegenerationOral BiologyStem Cell ResearchStem-cell TherapyMedicineEmbryonic Stem Cell
Induced pluripotent stem cells hold promise for regenerative medicine, yet reprogramming human cells remains difficult; while dermal fibroblasts are the most accessible source, dental tissues derived from ectomesenchyme contain mesenchymal‑like stem/progenitor cells that are often discarded as biomedical waste. The study investigated whether stem/progenitor cells from discarded dental tissues can be reprogrammed into iPS cells. Viral vectors delivering either Lin28/Nanog/Oct4/Sox2 or c‑Myc/Klf4/Oct4/Sox2 were used to reprogram stem cells from exfoliated deciduous teeth (SHED), stem cells from apical papilla (SCAP), and dental pulp stem cells (DPSCs). All three dental stem cell types were successfully reprogrammed into iPS cells at a higher efficiency than fibroblasts, exhibiting hES‑cell morphology, expressing pluripotency markers, forming embryoid bodies in vitro, and generating teratomas containing all three germ layers, demonstrating that ectomesenchymal cells are an excellent alternative source for iPS cells.
Generation of induced pluripotent stem (iPS) cells holds a great promise for regenerative medicine and other aspects of clinical applications. Many types of cells have been successfully reprogrammed into iPS cells in the mouse system; however, reprogramming human cells have been more difficult. To date, human dermal fibroblasts are the most accessible and feasible cell source for iPS generation. Dental tissues derived from ectomesenchyme harbor mesenchymal-like stem/progenitor cells and some of the tissues have been treated as biomedical wastes, for example, exfoliated primary teeth and extracted third molars. We asked whether stem/progenitor cells from discarded dental tissues can be reprogrammed into iPS cells. The 4 factors Lin28/Nanog/Oct4/Sox2 or c-Myc/Klf4/Oct4/Sox2 carried by viral vectors were used to reprogram 3 different dental stem/progenitor cells: stem cells from exfoliated deciduous teeth (SHED), stem cells from apical papilla (SCAP), and dental pulp stem cells (DPSCs). We showed that all 3 can be reprogrammed into iPS cells and appeared to be at a higher rate than fibroblasts. They exhibited a morphology indistinguishable from human embryonic stem (hES) cells in cultures and expressed hES cell markers SSEA-4, TRA-1-60, TRA-1-80, TRA-2-49, Nanog, Oct4, and Sox2. They formed embryoid bodies in vitro and teratomas in vivo containing tissues of all 3 germ layers. We conclude that cells of ectomesenchymal origin serve as an excellent alternative source for generating iPS cells.
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Induction of Pluripotent Stem Cells from Adult Human Fibroblasts by Defined Factors
Kazutoshi Takahashi, Koji Tanabe, Mari Ohnuki et al. · Cell · 2007 · 19.9K citations
Tissue Engineering, Regenerative Medicine, Defined Factors +14
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