Journal of Animal Research
  • Year: 2014
  • Volume: 4
  • Issue: 1

Epigenetic Reprogramming of Adult Mammalian Cells into Induced Pluripotent Stem Cells (iPSCs) - An Emerging Paradigm

  • Author:
  • Raj Kumar Mongre1, Simrinder Singh Sodhi1, Mrinmoy Ghosh1, Jeong Hyun Kim1, Nameun Kim1, Neelesh Sharma2, Sung Jong Oh1, Sung Woo Kim3, Dong Kee Jeong1,
  • Total Page Count: 12
  • Page Number: 103 to 114

1Laboratory of Animal Genetic Engineering and Stem Cell Biology, Department of Animal Biotechnology, Faculty of Biotechnology, Jeju National University, Jeju, Republic of Korea

2Division of Veterinary Medicine, Faculty of Veterinary Science & Animal Husbandry, Sher-e-kashmir University of Agricultural Sciences & Technology of Jammu, R.S. Pura, Jammu, India

3Animal Genetic Resource Station, National Institute of Animal Science, Namwon, Republic of Korea

*Corresponding author: DK Jeong; Email: dkjeong@jejunu.ac.kr

Online published on 12 June, 2014.

Abstract

The field of stem-cell biology has been catapulted forward by the startling development of reprogramming technology. The ability to restore pluripotency to somatic cells through the ectopic co-expression of reprogramming factors has created powerful new opportunities for modelling human diseases and offers hope for personalized regenerative cell therapies. Worldwide increases in life expectancy have been paralleled by a greater prevalence of chronic and age-associated disorders, particularly of the cardiovascular, neural and metabolic systems. Patient-specific induced pluripotent stem (iPS) cells are an emerging paradigm that may address this. Reprogrammed somatic cells from patients are already applied in disease modelling, drug testing and drug discovery, thus enabling researchers to undertake studies for treating diseases ‘in a dish’, which was previously inconceivable. Although there are currently several strategies to deliver reprogramming factors to induce iPSCs. In this study we have focus is on utilize plasmid vector to reprogramm because of convenience, reasonable efficiency and zero genes fingerprints and xeno free production of iPSCs. This virus-free technique reduces the safety concern for iPScell generation and application, and provides a source of cells for the investigation of the mechanisms underlying reprogramming and pluripotency.

Keywords

Induced pluripotent stem cells, Organs-on-Chips, OSKML, Markers of pluripotency