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Enhanced Expression of Fndc5 in Human Embryonic Stem Cell-Derived Neural Cells Along With Relevant Embryonic Neural Tissues Publisher Pubmed



Ahmadi Ghahrizjani F1 ; Ghaedi K2, 3 ; Salamian A2 ; Tanhaei S2 ; Shoaraye Nejati A2 ; Salehi H4 ; Nabiuni M7 ; Baharvand H5, 6 ; Nasresfahani MH2
Authors
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Authors Affiliations
  1. 1. Biology Department, Science and Research Branch, Islamic Azad University, Tehran, Iran
  2. 2. Department of Cellular Biotechnology at Cell Science Research Center, Royan Institute for Biotechnology, ACECR, Isfahan, Iran
  3. 3. Department of Biology, School of Sciences, University of Isfahan, Isfahan, Iran
  4. 4. Department of Anatomical Sciences, School of Medicine, Isfahan University of Medical Sciences, Isfahan, Iran
  5. 5. Department of Stem Cells and Developmental Biology at Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran
  6. 6. Department of Developmental Biology, University of Science and Culture, ACECR, Tehran, Iran
  7. 7. Cell and Molecular Biology Department, Faculty of Biological Sciences, Kharazmi University, Karaj, Iran

Source: Gene Published:2015


Abstract

Availability of human embryonic stem cells (hESCs) has enhanced the capability of basic and clinical research in the context of human neural differentiation. Derivation of neural progenitor (NP) cells from hESCs facilitates the process of human embryonic development through the generation of neuronal subtypes. We have recently indicated that fibronectin type III domain containing 5 protein (FNDC5) expression is required for appropriate neural differentiation of mouse embryonic stem cells (mESCs). Bioinformatics analyses have shown the presence of three isoforms for human FNDC5 mRNA. To differentiate which isoform of FNDC5 is involved in the process of human neural differentiation, we have used hESCs as an in vitro model for neural differentiation by retinoic acid (RA) induction. The hESC line, Royan H5, was differentiated into a neural lineage in defined adherent culture treated by RA and basic fibroblast growth factor (bFGF). We collected all cell types that included hESCs, rosette structures, and neural cells in an attempt to assess the expression of FNDC5 isoforms. There was a contiguous increase in all three FNDC5 isoforms during the neural differentiation process. Furthermore, the highest level of expression of the isoforms was significantly observed in neural cells compared to hESCs and the rosette structures known as neural precursor cells (NPCs). High expression levels of FNDC5 in human fetal brain and spinal cord tissues have suggested the involvement of this gene in neural tube development. Additional research is necessary to determine the major function of FDNC5 in this process. © 2014 Elsevier B.V.
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