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DHP-derivative and low oxygen tension effectively induces human adipose stromal cell reprogramming

Authors
 Hyung Shin Yoon  ;  Wha Young Kim  ;  Jeong-Hoon Kim 
Citation
 PLOS ONE, Vol.5(2) : e9026, 2010 
Journal Title
PLOS ONE
Issue Date
2010
MeSH
Adipose Tissue/cytology ; Animals ; Blotting, Western ; Catechols/pharmacology* ; Cell Dedifferentiation/drug effects* ; Cell Proliferation/drug effects ; Cell Transdifferentiation/drug effects ; Cell Transplantation/methods ; Cells, Cultured ; Diabetes Mellitus, Experimental/surgery ; Enzyme Activation/drug effects ; Female ; Gene Expression Profiling ; Humans ; Mice ; Mice, Inbred C57BL ; Mitogen-Activated Protein Kinases/metabolism ; Oxygen/pharmacology* ; Plant Extracts ; Polysaccharides/pharmacology* ; Rats ; Rats, Wistar ; Reverse Transcriptase Polymerase Chain Reaction ; Spinal Cord Injuries/surgery ; Stromal Cells/cytology* ; Stromal Cells/metabolism ; Stromal Cells/transplantation
Abstract
BACKGROUND AND METHODS: In this study, we utilized a combination of low oxygen tension and a novel anti-oxidant, 4-(3,4-dihydroxy-phenyl)-derivative (DHP-d) to directly induce adipose tissue stromal cells (ATSC) to de-differentiate into more primitive stem cells. De-differentiated ATSCs was overexpress stemness genes, Rex-1, Oct-4, Sox-2, and Nanog. Additionally, demethylation of the regulatory regions of Rex-1, stemnesses, and HIF1alpha and scavenging of reactive oxygen species were finally resulted in an improved stem cell behavior of de-differentiate ATSC (de-ATSC). Proliferation activity of ATSCs after dedifferentiation was induced by REX1, Oct4, and JAK/STAT3 directly or indirectly. De-ATSCs showed increased migration activity that mediated by P38/JUNK and ERK phosphorylation. Moreover, regenerative efficacy of de-ATSC engrafted spinal cord-injured rats and chemical-induced diabetes animals were significantly restored their functions.

CONCLUSIONS/SIGNIFICANCE: Our stem cell remodeling system may provide a good model which would provide insight into the molecular mechanisms underlying ATSC proliferation and transdifferentiation. Also, these multipotent stem cells can be harvested may provide us with a valuable reservoir of primitive and autologous stem cells for use in a broad spectrum of regenerative cell-based disease therapy
Files in This Item:
T201000396.pdf Download
DOI
10.1371/journal.pone.0009026
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Physiology (생리학교실) > 1. Journal Papers
Yonsei Authors
Kim, Dong Wook(김동욱) ORCID logo https://orcid.org/0000-0002-5025-1532
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/100659
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