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Totipotent Embryonic Stem Cells Arise in Ground-State Culture Conditions

机译:全能胚胎干细胞在基态培养条件下出现

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摘要

Embryonic stem cells (ESCs) are derived from mammalian embryos during the transition from totipotency, when individual blastomeres can make all lineages, to pluripotency, when they are competent to make only embryonic lineages. ESCs maintained with inhibitors of MEK and GSK3 (2i) are thought to represent an embryonically restricted ground state. However, we observed heterogeneous expression of the extraembryonic endoderm marker Hex in 2i-cultured embryos, suggesting that 2i blocked development prior to epiblast commitment. Similarly, 2i ESC cultures were heterogeneous and contained a Hex-positive fraction primed to differentiate into trophoblast and extraembryonic endoderm. Single Hex-positive ESCs coexpressed epiblast and extraembryonic genes and contributed to all lineages in chimeras. The cytokine LIF, necessary for ESC self-renewal, supported the expansion of this population but did not directly support Nanog-positive epiblast-like ESCs. Thus, 2i and LIF support a totipotent state comparable to early embryonic cells that coexpress embryonic and extraembryonic determinants.
机译:胚胎干细胞(ESC)是从全能性(单个卵裂球可以分化成所有谱系)到多能性(仅能分化成胚胎谱系)时从哺乳动物胚胎衍生而来的。用MEK和GSK3(2i)抑制剂维持的ESC被认为代表了胚胎受限制的基态。但是,我们观察到2i培养的胚胎中胚外内胚层标记物Hex的异质表达,表明2i在上皮细胞定型之前阻止了发育。类似地,2i ESC培养物是异质的,并包含已预分化为滋养细胞和胚外内胚层的Hex阳性级分。单个Hex阳性ESC共表达上皮细胞和胚外基因,并参与了嵌合体的所有谱系。 ESC自我更新所必需的细胞因子LIF支持该群体的扩展,但不直接支持Nanog阳性上皮细胞样ESC。因此,2i和LIF支持的全能状态与共表达胚胎和胚外决定簇的早期胚胎细胞相当。

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