Please use this identifier to cite or link to this item: https://doi.org/10.1177/0022034517730026
Title: Functional odontoblastic-like cells derived from human iPSCs
Authors: Han Xie
Nileshkumar Dubey
SHIM SE NGIE WINSTON 
Chrishan J. A. Ramachandra
Kyung-San Min
CAO TONG 
VINICIUS ROSA 
Keywords: biomaterial(s)
pulp biology
cell differentiation
dentinogenesis
odontoblast(s)
tissue engineering
Issue Date: 1-Jan-2018
Publisher: Sage
Citation: Han Xie, Nileshkumar Dubey, SHIM SE NGIE WINSTON, Chrishan J. A. Ramachandra, Kyung-San Min, CAO TONG, VINICIUS ROSA (2018-01-01). Functional odontoblastic-like cells derived from human iPSCs. Journal of Dental Research 97 (1) : 77-83. ScholarBank@NUS Repository. https://doi.org/10.1177/0022034517730026
Abstract: The induced pluripotent stem cells (iPSCs) have an intrinsic capability for indefinite self-renewal and large-scale expansion and can differentiate into all types of cells. Here, we tested the potential of iPSCs from dental pulp stem cells (DPSCs) to differentiate into functional odontoblasts. DPSCs were reprogrammed into iPSCs via electroporation of reprogramming factors OCT-4, SOX2, KLF4, LIN28, and L-MYC. The iPSCs presented overexpression of the reprogramming genes and high protein expressions of alkaline phosphatase, OCT4, and TRA-1-60 in vitro and generated tissues from 3 germ layers in vivo. Dentin discs with poly-L-lactic acid scaffolds containing iPSCs were implanted subcutaneously into immunodeficient mice. After 28 d from implantation, the iPSCs generated a pulp-like tissue with the presence of tubular dentin in vivo. The differentiation potential after long-term expansion was assessed in vitro. iPSCs and DPSCs of passages 4 and 14 were treated with either odontogenic medium or extract of bioactive cement for 28 d. Regardless of the passage tested, iPSCs expressed putative markers of odontoblastic differentiation and kept the same mineralization potential, while DPSC P14 failed to do the same. Analysis of these data collectively demonstrates that human iPSCs can be a source to derive human odontoblasts for dental pulp research and test bioactivity of materials.
Source Title: Journal of Dental Research
URI: https://scholarbank.nus.edu.sg/handle/10635/183447
ISSN: 0022-0345
1544-0591
DOI: 10.1177/0022034517730026
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