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Transdifferentiation of Human Hair Follicle Mesenchymal Stem Cells into Red Blood Cells by OCT4

机译:OCT4将人毛囊间充质干细胞转分化为红细胞

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Shortage of red blood cells (RBCs, erythrocytes) can have potentially life-threatening consequences for rare or unusual blood type patients with massive blood loss resulting from various conditions. Erythrocytes have been derived from human pluripotent stem cells (PSCs), but the risk of potential tumorigenicity cannot be ignored, and a majority of these cells produced from PSCs express embryonicε- and fetalγ-globins with little or no adultβ-globin and remain nucleated. Here we report a method to generate erythrocytes from human hair follicle mesenchymal stem cells (hHFMSCs) by enforcing OCT4 gene expression and cytokine stimulation. Cells generated from hHFMSCs expressed mainly the adultβ-globin chain with minimum level of the fetalγ-globin chain. Furthermore, these cells also underwent multiple maturation events and formed enucleated erythrocytes with a biconcave disc shape. Gene expression analyses showed that OCT4 regulated the expression of genes associated with both pluripotency and erythroid development during hHFMSC transdifferentiation toward erythroid cells. These findings show that mature erythrocytes can be generated from adult somatic cells, which may serve as an alternative source of RBCs for potential autologous transfusion.
机译:红细胞(RBC,红细胞)的短缺可能对罕见或不寻常的血型患者造成威胁生命的后果,因各种情况导致大量失血。红细胞已经衍生自人类多能干细胞(PSC),但潜在致瘤性的风险不可忽视,并且这些由PSC产生的细胞中的大多数表达胚胎性β-和胎儿γ-珠蛋白,而成人β-珠蛋白很少或没有,并保持有核状态。在这里,我们报告了一种通过执行OCT4基因表达和细胞因子刺激从人毛囊间充质干细胞(hHFMSCs)产生红细胞的方法。从hHFMSCs产生的细胞主要表达成年β-球蛋白链,而胎儿γ-球蛋白链的水平最低。此外,这些细胞还经历了多个成熟事件,并形成了具有双凹盘形状的去核红细胞。基因表达分析表明,OCT4调节hHFMSC向红系细胞的转分化过程中与多能性和红系发育相关的基因的表达。这些发现表明,成熟的红细胞可以从成年的体细胞中产生,其可以作为潜在的自体输血的红细胞的替代来源。

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