胚胎干细胞
细胞生物学
生物
干细胞
诱导多能干细胞
胚芽层
体细胞
再生医学
细胞分化
遗传学
基因
作者
Xuefei Gao,Monika Nowak‐Imialek,Xi Chen,Dongsheng Chen,Doris Herrmann,Degong Ruan,Andy Chun Hang Chen,Mélanie Eckersley-Maslin,Shakil Ahmad,Yin Lau Lee,Toshihiro Kobayashi,David Ryan,Jixing Zhong,Jiacheng Zhu,Jian Wu,Guocheng Lan,Stoyan Petkov,Jian Yang,Liliana Antunes,Lia S. Campos
标识
DOI:10.1038/s41556-019-0333-2
摘要
We recently derived mouse expanded potential stem cells (EPSCs) from individual blastomeres by inhibiting the critical molecular pathways that predispose their differentiation. EPSCs had enriched molecular signatures of blastomeres and possessed developmental potency for all embryonic and extra-embryonic cell lineages. Here, we report the derivation of porcine EPSCs, which express key pluripotency genes, are genetically stable, permit genome editing, differentiate to derivatives of the three germ layers in chimeras and produce primordial germ cell-like cells in vitro. Under similar conditions, human embryonic stem cells and induced pluripotent stem cells can be converted, or somatic cells directly reprogrammed, to EPSCs that display the molecular and functional attributes reminiscent of porcine EPSCs. Importantly, trophoblast stem-cell-like cells can be generated from both human and porcine EPSCs. Our pathway-inhibition paradigm thus opens an avenue for generating mammalian pluripotent stem cells, and EPSCs present a unique cellular platform for translational research in biotechnology and regenerative medicine. Gao, Nowak-Imialek, Chen et al. generate porcine and human stem cells that possess expanded developmental potency for both embryonic and extra-embryonic cell lineages.
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