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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >RUNX1a enhances hematopoietic lineage commitment from human embryonic stem cells and inducible pluripotent stem cells.
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RUNX1a enhances hematopoietic lineage commitment from human embryonic stem cells and inducible pluripotent stem cells.

机译:Runx1a增强了人胚胎干细胞和诱导性多能干细胞的造血谱系承诺。

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摘要

Advancements in human pluripotent stem cell (hPSC) research have potential to revolutionize therapeutic transplantation. It has been demonstrated that transcription factors may play key roles in regulating maintenance, expansion, and differentiation of hPSCs. In addition to its regulatory functions in hematopoiesis and blood-related disorders, the transcription factor RUNX1 is also required for the formation of definitive blood stem cells. In this study, we demonstrated that expression of endogenous RUNX1a, an isoform of RUNX1, parallels with lineage commitment and hematopoietic emergence from hPSCs, including both human embryonic stem cells and inducible pluripotent stem cells. In a defined hematopoietic differentiation system, ectopic expression of RUNX1a facilitates emergence of hematopoietic progenitor cells (HPCs) and positively regulates expression of mesoderm and hematopoietic differentiation-related factors, including Brachyury, KDR, SCL, GATA2, and PU.1. HPCs derived from RUNX1a hPSCs show enhanced expansion ability, and the ex vivo-expanded cells are capable of differentiating into multiple lineages. Expression of RUNX1a in embryoid bodies (EBs) promotes definitive hematopoiesis that generates erythrocytes with β-globin production. Moreover, HPCs generated from RUNX1a EBs possess ≥9-week repopulation ability and show multilineage hematopoietic reconstitution in vivo. Together, our results suggest that RUNX1a facilitates the process of producing therapeutic HPCs from hPSCs.
机译:人类多能干细胞(HPSC)研究的进步具有彻底改变治疗移植的潜力。已经证明转录因子可能在调节HPSC的维护,扩张和分化方面发挥关键作用。除了在血液缺血和血液相关疾病中的调节功能外,还需要转录因子RONX1来形成确定的血液干细胞。在这项研究中,我们证明了内源性Runx1a的表达,Runx1的同种型,具有血统承诺和HPSC的造血出现的平行,包括人胚胎干细胞和诱导的多能干细胞。在规定的造血分化系统中,RUNX1a的异位表达促进造血祖细胞(HPC)的出现,并积极调节中胚层和造血分化相关因素的表达,包括Brachyury,KDR,SCL,GATA2和PU.1。来自Runx1a HPSCS的HPCS显示出增强的扩展能力,并且前体内扩展的细胞能够区分为多个谱系。 Runx1a在胚胎体(EBS)中的表达促进了具有β-珠蛋白产生的红细胞产生的明确血液血液。此外,从Runx1a EBS产生的HPC具有≥9周的重新灌注能力,并在体内显示多百百次造血重建。我们的结果表明,Runx1a有助于从HPSCS生产治疗HPC的过程。

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