胚状体
血管母细胞
胚胎干细胞
生物
造血
细胞生物学
Notch信号通路
内皮
祖细胞
川地34
干细胞
血管生成
诱导多能干细胞
解剖
免疫学
遗传学
信号转导
基因
作者
Andrea Ditadi,Christopher M. Sturgeon,Joanna Tober,Génève Awong,Marion Kennedy,Amanda D. Yzaguirre,Lisa Azzola,Elizabeth S. Ng,Edouard G. Stanley,Deborah L. French,Xin Cheng,Paul Gadue,Nancy A. Speck,Andrew G. Elefanty,Gordon Keller
摘要
The generation of haematopoietic stem cells (HSCs) from human pluripotent stem cells (hPSCs) will depend on the accurate recapitulation of embryonic haematopoiesis. In the early embryo, HSCs develop from the haemogenic endothelium (HE) and are specified in a Notch-dependent manner through a process named endothelial-to-haematopoietic transition (EHT). As HE is associated with arteries, it is assumed that it represents a subpopulation of arterial vascular endothelium (VE). Here we demonstrate at a clonal level that hPSC-derived HE and VE represent separate lineages. HE is restricted to the CD34+CD73−CD184− fraction of day 8 embryoid bodies and it undergoes a NOTCH-dependent EHT to generate RUNX1C+ cells with multilineage potential. Arterial and venous VE progenitors, in contrast, segregate to the CD34+CD73medCD184+ and CD34+CD73hiCD184− fractions, respectively. Together, these findings identify HE as distinct from VE and provide a platform for defining the signalling pathways that regulate their specification to functional HSCs. Keller and colleagues show that haemogenic and vascular endothelium represent distinct lineages and that haemogenic endothelium gives rise to multipotent haematopoietic progenitors through a NOTCH-dependent endothelial-to-haematopoietic transition.
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