Rapid induction and long-term self-renewal of primitive neural precursors from human embryonic stem cells by small molecule inhibitors

  • Li, Wenlin
  • Sun, Woong
  • Zhang, Yu
  • Wei, Wanguo
  • Ambasudhan, Rajesh
  • 외 9명
Citations

WEB OF SCIENCE

400
Citations

SCOPUS

334

초록

Human embryonic stem cells (hESCs) hold enormous promise for regenerative medicine. Typically, hESC-based applications would require their in vitro differentiation into a desirable homogenous cell population. A major challenge of the current hESC differentiation paradigm is the inability to effectively capture and, in the long-term, stably expand primitive lineage-specific stem/precursor cells that retain broad differentiation potential and, more importantly, developmental stage-specific differentiation propensity. Here, we report synergistic inhibition of glycogen synthase kinase 3 (GSK3), transforming growth factor beta (TGF-beta), and Notch signaling pathways by small molecules can efficiently convert monolayer cultured hESCs into homogenous primitive neuroepithelium within 1 wk under chemically defined condition. These primitive neuroepithelia can stably self-renew in the presence of leukemia inhibitory factor, GSK3 inhibitor (CHIR99021), and TGF-beta receptor inhibitor (SB431542); retain high neurogenic potential and responsiveness to instructive neural patterning cues toward midbrain and hindbrain neuronal subtypes; and exhibit in vivo integration. Our work uniformly captures and maintains primitive neural stem cells from hESCs.

키워드

IN-VITROHUMAN ESEPITHELIAL-CELLSDIFFERENTIATIONSPECIFICATIONBRAINSTAGEMAINTENANCEACTIVATIONGENERATION
제목
Rapid induction and long-term self-renewal of primitive neural precursors from human embryonic stem cells by small molecule inhibitors
저자
Li, WenlinSun, WoongZhang, YuWei, WanguoAmbasudhan, RajeshXia, PengTalantova, MariaLin, TongxiangKim, JanghwanWang, XiaoleiKim, Woon RyoungLipton, Stuart A.Zhang, KangDing, Sheng
DOI
10.1073/pnas.1014041108
발행일
2011-05-17
유형
Article
저널명
Proceedings of the National Academy of Sciences of the United States of America
108
20
페이지
8299 ~ 8304