生物
胚胎干细胞
祖细胞
定向微分
细胞生物学
细胞命运测定
肠内分泌细胞
报告基因
发育生物学
干细胞
细胞分化
再生医学
诱导多能干细胞
细胞
同源盒蛋白纳米
转录组
胚状体
基因
计算生物学
成体干细胞
电池类型
基因表达
遗传学
内分泌系统
转录因子
内分泌学
激素
作者
Haisong Liu,Huan Yang,Dicong Zhu,Xin Sui,Juan Li,Zhen Liang,Lei Xu,Zeyu Chen,Anzhi Yao,Long Zhang,Xi Zhang,Yi Xing,Meng Li,Shiqing Xu,Wenjian Zhang,Hua Lin,Linghai Xie,Jinning Lou,Yong Zhang,Jianzhong Xi,Hongkui Deng
出处
期刊:Cell Research
[Springer Nature]
日期:2014-09-05
卷期号:24 (10): 1181-1200
被引量:40
摘要
The applications of human pluripotent stem cell (hPSC)-derived cells in regenerative medicine has encountered a long-standing challenge: how can we efficiently obtain mature cell types from hPSCs? Attempts to address this problem are hindered by the complexity of controlling cell fate commitment and the lack of sufficient developmental knowledge for guiding hPSC differentiation. Here, we developed a systematic strategy to study hPSC differentiation by labeling sequential developmental genes to encompass the major developmental stages, using the directed differentiation of pancreatic β cells from hPSCs as a model. We therefore generated a large panel of pancreas-specific mono- and dual-reporter cell lines. With this unique platform, we visualized the kinetics of the entire differentiation process in real time for the first time by monitoring the expression dynamics of the reporter genes, identified desired cell populations at each differentiation stage and demonstrated the ability to isolate these cell populations for further characterization. We further revealed the expression profiles of isolated NGN3-eGFP(+) cells by RNA sequencing and identified sushi domain-containing 2 (SUSD2) as a novel surface protein that enriches for pancreatic endocrine progenitors and early endocrine cells both in human embryonic stem cells (hESC)-derived pancreatic cells and in the developing human pancreas. Moreover, we captured a series of cell fate transition events in real time, identified multiple cell subpopulations and unveiled their distinct gene expression profiles, among heterogeneous progenitors for the first time using our dual reporter hESC lines. The exploration of this platform and our new findings will pave the way to obtain mature β cells in vitro.
科研通智能强力驱动
Strongly Powered by AbleSci AI