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首页> 外文期刊>BioMed research international >In VitroLarge Scale Production of Human Mature Red Blood Cells from Hematopoietic Stem Cells by Coculturing with Human Fetal Liver Stromal Cells
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In VitroLarge Scale Production of Human Mature Red Blood Cells from Hematopoietic Stem Cells by Coculturing with Human Fetal Liver Stromal Cells

机译:通过与人胎肝基质细胞共培养,从造血干细胞体外大规模生产人成熟红细胞

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In vitromodels of human erythropoiesis are useful in studying the mechanisms of erythroid differentiation in normal and pathological conditions. Here we describe an erythroid liquid culture system starting from cord blood derived hematopoietic stem cells (HSCs). HSCs were cultured for more than 50 days in erythroid differentiation conditions and resulted in a more than 109-fold expansion within 50 days under optimal conditions. Homogeneous erythroid cells were characterized by cell morphology, flow cytometry, and hematopoietic colony assays. Furthermore, terminal erythroid maturation was improved by cosculturing with human fetal liver stromal cells. Cocultured erythroid cells underwent multiple maturation events, including decrease in size, increase in glycophorin A expression, and nuclear condensation. This process resulted in extrusion of the pycnotic nuclei in up to 80% of the cells. Importantly, they possessed the capacity to express the adult definitiveβ-globin chain upon further maturation. We also show that the oxygen equilibrium curves of the cord blood-differentiated red blood cells (RBCs) are comparable to normal RBCs. The large number and purity of erythroid cells and RBCs produced from cord blood make this method useful for fundamental research in erythroid development, and they also provide a basis for future production of available RBCs for transfusion.
机译:人类红细胞生成的体外模型可用于研究正常和病理条件下红细胞分化的机制。在这里,我们描述了一种从脐带血衍生的造血干细胞(HSC)开始的类红细胞液体培养系统。 HSC在红系分化条件下培养超过50天,并在最佳条件下在50天内导致109倍以上的扩增。通过细胞形态学,流式细胞术和造血集落测定来表征同质的类红细胞。此外,通过与人胎肝基质细胞共培养改善了最终的类红细胞成熟。共培养的类红细胞经历了多次成熟事件,包括大小减小,糖蛋白A表达增加和核浓缩。该过程导致了最多80%的细胞中的脓性核挤出。重要的是,它们具有在进一步成熟时表达成人定型β-珠蛋白链的能力。我们还显示,脐带血分化的红细胞(RBC)的氧平衡曲线与正常RBC相当。脐带血产生的大量红细胞和红细胞,使该方法可用于红细胞发育的基础研究,并且它们还为将来生产可用于输血的红细胞提供了基础。

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