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Human iPSC-derived oligodendrocyte progenitor cells can myelinate and rescue a mouse model of congenital hypomyelination

机译:人类iPSC衍生的少突胶质祖细胞可以使小鼠先天性髓鞘不足症模型脱髓鞘并营救

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摘要

Neonatal engraftment by oligodendrocyte progenitor cells (OPCs) permits the myelination of the congenitally dysmyelinated brain. To establish a potential autologous source of these cells, we developed a strategy by which to differentiate human induced pluripotent stem cells (hiPSCs) into OPCs. From three hiPSC lines, as well as from human embryonic stem cells (hESCs), we generated highly enriched OLIG2+/PDGFRα+/NKX2.2 +/SOX10+ human OPCs, which could be further purified using fluorescence-activated cell sorting. hiPSC OPCs efficiently differentiated into both myelinogenic oligodendrocytes and astrocytes, in vitro and in vivo. Neonatally engrafted hiPSC OPCs robustly myelinated the brains of myelin-deficient shiverer mice and substantially increased their survival. The speed and efficiency of myelination by hiPSC OPCs was higher than that previously observed using fetal-tissue-derived OPCs, and no tumors from these grafts were noted as long as 9 months after transplant. These results suggest the potential utility of hiPSC-derived OPCs in treating disorders of myelin loss.
机译:少突胶质细胞祖细胞(OPC)的新生儿植入可以使先天性脱髓鞘的大脑髓鞘化。为了建立这些细胞的潜在自体来源,我们开发了一种将人类诱导的多能干细胞(hiPSC)分化为OPC的策略。从三个hiPSC系以及人类胚胎干细胞(hESCs),我们生成了高度富集的OLIG2 + /PDGFRα+ / NKX2.2 + / SOX10 +人类OPC,可以使用荧光激活细胞分选法进一步纯化。在体外和体内,hiPSC OPC都可以有效地分化为有髓神经的少突胶质细胞和星形胶质细胞。新生儿植入的hiPSC OPC能够使髓磷脂缺乏的颤抖小鼠的大脑强健地髓鞘化,并大大提高了它们的存活率。 hiPSC OPC进行髓鞘化的速度和效率要高于以前使用胎儿组织衍生的OPC观察到的速度和效率,并且在移植后长达9个月都未发现这些移植物的肿瘤。这些结果表明,hiPSC衍生的OPC在治疗髓磷脂丢失疾病中具有潜在的实用性。

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