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FLI1 and PKC co-activation promote highly efficient differentiation of human embryonic stem cells into endothelial-like cells

机译:FLI1和PKC共激活促进人类胚胎干细胞向内皮样细胞的高效分化

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Rationale-endothelial cells (ECs) play important roles in various regeneration processes and can be used in a variety of therapeutic applications, such as cardiac regeneration, gene therapy, tissue-engineered vascular grafts and prevascularized tissue transplants. ECs can be acquired from pluripotent and adult stem cells. To acquire ECs from human embryonic stem cells (hESCs) in a fast, efficient and economic manner. We established a conditional overexpression system in hESCs based on 15 transcription factors reported to be responsible for hematopoiesis lineage. Among them, only overexpression of FLI1 could induce hESCs to a hematopoietic lineage. Moreover, simultaneous overexpression of FLI1 and activation of PKC rapidly and efficiently induced differentiation of hESCs into induced endothelial cells (iECs) within 3 days, while neither FLI1 overexpression nor PKC activation alone could derive iECs from hESCs. During induction, hESCs differentiated into spindle-like cells that were consistent in appearance with ECs. Flow cytometric analysis revealed that 92.2–98.9% and 87.2–92.6% of these cells were CD31+ and CD144+, respectively. Expression of vascular-specific genes dramatically increased, while the expression of pluripotency genes gradually decreased during induction. iECs incorporated acetylated low-density lipoproteins, strongly expressed vWF and bound UEA-1. iECs also formed capillary-like structures both in vitro and in vivo. RNA-seq analysis verified that these cells closely resembled their in vivo counterparts. Our results showed that co-activation of FLI1 and PKC could induce differentiation of hESCs into iECs in a fast, efficient and economic manner.
机译:基本内皮细胞(EC)在各种再生过程中均起着重要作用,可用于多种治疗应用,例如心脏再生,基因治疗,组织工程化的血管移植和血管形成前的组织移植。 ECs可以从多能干细胞和成年干细胞中获得。以快速,高效和经济的方式从人胚胎干细胞(hESC)获得EC。我们建立在hESCs的条件性过表达系统的基础上,据报道有15个转录因子负责造血谱系。其中,只有FLI1的过表达可以诱导hESCs向造血谱系。而且,同时表达FLI1和激活PKC可以在3天之内快速有效地诱导hESCs分化为诱导的内皮细胞(iECs),而单独的FLI1过表达和PKC激活均不能从hESCs获得iEC。在诱导过程中,hESCs分化为纺锤状细胞,外观与ECs一致。流式细胞仪分析显示,这些细胞中分别有92.2–98.9%和87.2–92.6%是CD31 +和CD144 +。血管特异性基因的表达急剧增加,而多能性基因的表达在诱导过程中逐渐降低。 iEC整合了乙酰化的低密度脂蛋白,强表达的vWF和结合的UEA-1。 iECs在体外和体内也都形成了毛细血管状的结构。 RNA-seq分析证实,这些细胞与它们的体内对应物非常相似。我们的结果表明,FLI1和PKC的共激活可以快速,高效和经济地诱导hESC分化为iEC。

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