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Protein & Cell ; (12): 950-956, 2011.
Article in English | WPRIM | ID: wpr-757030

ABSTRACT

Genetic manipulation of human pluripotent stem cells (hPSCs) provides a powerful tool for modeling diseases and developing future medicine. Recently a number of independent genome-editing techniques were developed, including plasmid, bacterial artificial chromosome, adeno-associated virus vector, zinc finger nuclease, transcription activator-like effecter nuclease, and helper-dependent adenoviral vector. Gene editing has been successfully employed in different aspects of stem cell research such as gene correction, mutation knock-in, and establishment of reporter cell lines (Raya et al., 2009; Howden et al., 2011; Li et al., 2011; Liu et al., 2011b; Papapetrou et al., 2011; Sebastiano et al., 2011; Soldner et al., 2011; Zou et al., 2011a). These techniques combined with the utility of hPSCs will significantly influence the area of regenerative medicine.


Subject(s)
Humans , Cell Line , Chromosomes, Artificial, Bacterial , Genetics , Deoxyribonucleases , Genetics , Dependovirus , Genetics , Gene Targeting , Methods , Genetic Engineering , Methods , Genetic Vectors , Genome, Human , Mutagenesis, Insertional , Mutation , Plasmids , Pluripotent Stem Cells , Cell Biology , Metabolism , Zinc Fingers , Genetics
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