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  1. The basic helix-loop-helix transcription factor neurog3 is required for development of the human endocrine pancreas
  2. Mitochondrial Disease-Specific Induced Pluripotent Stem Cell Models: Generation and Characterization.
  3. Multisystemic Disease Modeling of Liver-Derived Protein Folding Disorders Using Induced Pluripotent Stem Cells (iPSCs).
  4. Efficient recovery of undifferentiated human embryonic stem cell cryopreserved with hydroxyethyl starch, dimethyl sulphoxide and serum replacement
  5. Reversible lineage-specific priming of human embryonic stem cells can be exploited to optimize the yield of differentiated cells.
  6. Characterization of Mitochondrial Populations During Stem Cell Differentiation
  7. Large-scale generation of human iPSC-derived neural stem cells/early neural progenitor cells and their neuronal differentiation.
  8. Differentiation of Human Pluripotent Stem Cells to Cardiomyocytes Under Defined Conditions.
  9. Human iPS cell-derived fibroblast-like cells as feeder layers for iPS cell derivation and expansion
  10. Human embryonic stem cells form functional thyroid follicles.
  11. No DNA damage response and negligible genome-wide transcriptional changes in human embryonic stem cells exposed to terahertz radiation.
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