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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
WEB OF SCIENCE
400SCOPUS
334초록
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
- 제목
- Rapid induction and long-term self-renewal of primitive neural precursors from human embryonic stem cells by small molecule inhibitors
- 저자
- Li, Wenlin; Sun, Woong; Zhang, Yu; Wei, Wanguo; Ambasudhan, Rajesh; Xia, Peng; Talantova, Maria; Lin, Tongxiang; Kim, Janghwan; Wang, Xiaolei; Kim, Woon Ryoung; Lipton, Stuart A.; Zhang, Kang; Ding, Sheng
- 발행일
- 2011-05-17
- 유형
- Article
- 권
- 108
- 호
- 20
- 페이지
- 8299 ~ 8304