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Enforced Expression of HOXB4 in Human Embryonic Stem Cells Enhances the Production of Hematopoietic Progenitors but Has No Effect on the Maturation of Red Blood Cells

机译:HOXB4在人类胚胎干细胞中的强制表达增强了造血祖细胞的产生,但对红细胞的成熟没有影响

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We have developed a robust, Good Manufacturing Practice-compatible differentiation protocol capable of producing scalable quantities of red blood cells (RBCs) from human pluripotent stem cells (hPSCs). However, translation of this protocol to the clinic has been compromised because the RBCs produced are not fully mature; thus, they express embryonic and fetal, rather than adult globins, and they do not enucleate efficiently. Based on previous studies, we predicted that activation of exogenous HOXB4 would increase the production of hematopoietic progenitor cells (HPCs) from hPSCs and hypothesized that it might also promote the production of more mature, definitive RBCs. Using a tamoxifen-inducible HOXB4-ERT2 expression system, we first demonstrated that activation of HOXB4 does increase the production of HPCs from hPSCs as determined by colony-forming unit culture activity and the presence of CD43+CD34+ progenitors. Activation of HOXB4 caused a modest, but significant, increase in the proportion of immature CD235a+/CD71+ erythroid cells. However, this did not result in a significant increase in more mature CD235a+/CD71? cells. RBCs produced in the presence of enhanced HOXB4 activity expressed embryonic (ε) and fetal (γ) but not adult (β) globins, and the proportion of enucleated cells was comparable to that of the control cultures. We conclude that programming with the transcription factor HOXB4 increases the production of hematopoietic progenitors and immature erythroid cells but does not resolve the inherent challenges associated with the production of mature adult-like enucleated RBCs.As worldwide blood donations decrease and transfusable transmitted infections increase, intense interest has ensued in deriving red blood cells (RBCs) in vitro from alternative sources such as pluripotent stem cells. A translatable protocol was developed to generate RBCs; however, these RBCs have an immature phenotype. It was hypothesized that the transcription factor HOXB4 could enhance their production and maturation. Although HOXB4 increased the production of erythroid progenitors, it did not promote their maturation. Despite the remaining challenges, a robust system has been established to test other candidates and add to the knowledge base in this field.
机译:我们已经开发了一种健壮的,与良好生产规范兼容的分化方案,能够从人多能干细胞(hPSC)产生可扩展量的红细胞(RBC)。但是,由于产生的RBC尚未完全成熟,该协议在临床上的翻译受到了损害。因此,它们表达胚胎和胎儿,而不是成年球蛋白,并且不能有效去核。根据以前的研究,我们预测外源性HOXB4的激活将增加hPSC造血祖细胞(HPC)的产生,并假设它也可能促进更成熟,确定的RBC的产生。使用他莫昔芬诱导的HOXB4-ERT2表达系统,我们首先证明了HOXB4的激活确实增加了hPSC的HPC产量,这是通过菌落形成单位培养活性和CD43 + CD34 +祖细胞的存在来确定的。 HOXB4的激活导致未成熟的CD235a + / CD71 +红细胞的比例适度但显着增加。但是,这不会导致更成熟的CD235a + / CD71显着增加吗?细胞。在HOXB4活性增强的情况下产生的RBC表达胚胎(ε)和胎儿(γ),但不表达成人(β)珠蛋白,去核细胞的比例与对照培养物相当。我们得出的结论是,用转录因子HOXB4进行编程可增加造血祖细胞和未成熟红系细胞的产量,但无法解决与成人成年状去核红细胞的生产相关的内在挑战。随着全球献血量的减少和可传播的传播感染的增加,强烈引起人们兴趣的是从诸如多能干细胞等替代来源体外获得红细胞(RBC)。开发了一种可翻译的协议来生成RBC。但是,这些RBC具有不成熟的表型。假设转录因子HOXB4可以增强它们的产生和成熟。尽管HOXB4增加了类红细胞祖细胞的产生,但并未促进它们的成熟。尽管仍然存在挑战,但已经建立了一个强大的系统来测试其他候选人,并增加该领域的知识库。

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