Science and Research

Genome stability of programmed stem cell products

Inherited and acquired genomic abnormalities are known to cause genetic diseases and contribute to cancer formation. Recent studies demonstrated a substantial mutational load in mouse and human embryonic and induced pluripotent stem cells (ESCs and iPSCs). Single nucleotide variants, copy number variations, and larger chromosomal abnormalities may influence the differentiation capacity of pluripotent stem cells and the functionality of their derivatives in disease modeling and drug screening, and are considered a serious risk for cellular therapies based on ESC or iPSC derivatives. This review discusses the types and origins of different genetic abnormalities in pluripotent stem cells, methods for their detection, and the mechanisms of development and enrichment during reprogramming and culture expansion.

  • Martin, U.

Keywords

  • Chromosomal aberrations
  • Copy number variations
  • Induced pluripotent stem cells
  • Insertions and deletions
  • Karyotype abnormalities
  • Single nucleotide variants
  • iPS cells
Publication details
DOI: 10.1016/j.addr.2017.09.004
Journal: Advanced drug delivery reviews
Pages: 108-117 
Work Type: Review
Location: BREATH
Disease Area: ROR
Partner / Member: MHH
Access-Number: 28917518

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