Direct differentiation of insulin-producing cells from human urine-derived stem cells

  • Hwang, Yongha
  • Cha, Seon-Heui
  • Hong, Yeonhee
  • Jung, Ae Ryang
  • Jun, Hee-Sook
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초록

The loss of pancreatic beta-cells is a cause of diabetes. Therefore, replacement of pancreatic beta-cells is a logical strategy for the treatment of diabetes, and the generation of insulin-producing cells (IPCs) from stem cells has been widely investigated as an alternative source for pancreatic beta-cells. Here, we isolated stem cells from human urine and investigated their differentiation potential into IPCs. We checked the expression of surface stem cell markers and stem cell transcription factors, and found that the isolated human urine-derived stem cells (hUDSCs) expressed the stem cell markers CD44, CD90, CD105 and stage-specific embryonic antigen (SSEA)-4. In addition, these cells expressed octamer binding transcription factor (Oct)4 and vimentin. hUDSCs could differentiate into adipocytes and osteocytes, as evidenced by Oil-red O staining and Alizarin Red S-staining of differentiated cells, respectively. When we directly differentiated hUDSCs into IPCs, the differentiated cells expressed mRNA for pancreatic transcription factors such as neurogenin (Ngn)3 and pancreatic and duodenal homeobox (Pdx)l. Differentiated IPCs expressed insulin and glucagon mRNA and protein, and these IPCs also secreted insulin in response to glucose stimulation. In conclusion, we found that hUDSCs can be directly differentiated into IPCs, which secrete insulin in response to glucose.

키워드

urine-derived stem celldiabetesdifferentiation of insulin producing cellpancreatic beta-cellADIPOSE-TISSUEISLET TRANSPLANTATIONPOTENTIAL SOURCEPLURIPOTENCYEXPRESSIONRESISTANCETHERAPYNETWORKNANOGOCT4
제목
Direct differentiation of insulin-producing cells from human urine-derived stem cells
저자
Hwang, YonghaCha, Seon-HeuiHong, YeonheeJung, Ae RyangJun, Hee-Sook
DOI
10.7150/ijms.36011
발행일
2019-11
유형
Article
저널명
International Journal of Medical Sciences
16
12
페이지
1668 ~ 1676