首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Human ESC-derived hemogenic endothelial cells undergo distinct waves of endothelial to hematopoietic transition
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Human ESC-derived hemogenic endothelial cells undergo distinct waves of endothelial to hematopoietic transition

机译:人类ESC衍生的造血内皮细胞经历了从内皮到造血细胞的明显转变

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摘要

Several studies have demonstrated that hematopoietic cells originate from endothelium in early development; however, the phenotypic progression of progenitor cells during human embryonic hemogenesis is not well described. Here, we define the developmental hierarchy among intermediate populations of hematopoietic progenitor cells (HPCs) derived from human embryonic stem cells (hESCs). We genetically modified hESCs to specifically demarcate acquisition of vascular (VE-cadherin) and hematopoietic (CD41a) cell fate and used this dual-reporting transgenic hESC line to observe endothelial to hematopoietic transition by real-time confocal microscopy. Live imaging and clonal analyses revealed a temporal bias in commitment of HPCs that recapitulates discrete waves of lineage differentiation noted during mammalian hemogenesis. Specifically, HPCs isolated at later time points showed reduced capacity to form erythroid/megakaryocytic cells and exhibited a tendency toward myeloid fate that was enabled by expression of the Notch ligand Dll4 on hESC-derived vascular feeder cells. These data provide a framework for defining HPC lineage potential, elucidate a molecular contribution from the vascular niche in promoting hematopoietic lineage progression, and distinguish unique subpopulations of hemogenic endothelium during hESC differentiation.
机译:多项研究表明,造血细胞在早期发育中源自内皮。然而,人类胚胎造血过程中祖细胞的表型进展并没有得到很好的描述。在这里,我们定义了人类胚胎干细胞(hESCs)衍生的造血祖细胞(HPCs)的中间种群之间的发展层次。我们对hESC进行了基因修饰,以明确划分血管(VE-钙黏着蛋白)和造血(CD41a)细胞命运的获得,并使用这种双重报告的转基因hESC系通过实时共聚焦显微镜观察内皮向造血的转化。实时成像和克隆分析显示,HPC的承诺存在时间偏差,概述了哺乳动物造血过程中注意到的离散的谱系分化波。具体而言,在较晚时间点分离的HPC表现出形成红系/巨核细胞的能力降低,并表现出通过在Notch配体Dll4在hESC来源的血管饲养细胞上表达而实现的命运。这些数据为定义HPC谱系潜力提供了框架,阐明了血管利基在促进造血谱系进程中的分子贡献,并在hESC分化过程中区分了造血内皮的独特亚群。

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