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Reprogramming of somatic cells after fusion with induced pluripotent stem cells and nuclear transfer embryonic stem cells.

机译:与诱导性多能干细胞和核移植胚胎干细胞融合后,体细胞的重编程。

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In this study we examine whether a somatic cell, once returned to a pluripotent state, gains the ability to reprogram other somatic cells. We reprogrammed mouse embryonic fibroblasts by viral induction of oct4, sox2, c-myc, and klf-4 genes. Upon fusion of the resulting iPS cells with somatic cells harboring an Oct4-GFP transgene we observed, GFP expression along with activation of Oct4 from the somatic genome, expression of key pluripotency genes, and positive immunostaining for Oct4, SSEA-1, and alkaline phosphatase. The iPS-somatic hybrids had the ability to differentiate into cell types indicative of the three germ layers and were able to localize to the inner cell mass of aggregated embryos. Furthermore, ntES cells were used as fusion partners to generate hybrids, which were also confirmed to be reprogrammed to a pluripotent state. These results demonstrate that once a somatic cell nucleus is reprogrammed, it acquires the capacity and potency to reprogram other somatic cells by cell fusion and shares this functional property with normal embryonic stem (ES) cells.
机译:在这项研究中,我们研究了体细胞一旦返回多能状态,是否具有重新编程其他体细胞的能力。我们通过病毒诱导的oct4,sox2,c-myc和klf-4基因重新编程了小鼠胚胎成纤维细胞。在将所得的iPS细胞与带有Oct4-GFP转基因的体细胞融合后,我们观察到GFP的表达以及体细胞基因组中Oct4的激活,关键多能性基因的表达以及Oct4,SSEA-1和碱性磷酸酶的阳性免疫染色。 iPS-体细胞杂种具有分化为指示三个胚层的细胞类型的能力,并且能够定位于聚集的胚胎的内部细胞团。此外,ntES细胞被用作融合伴侣以产生杂交体,也被证实可以重新编程为多能状态。这些结果表明,一旦对体细胞核进行了重新编程,它将获得通过细胞融合来对其他体细胞进行重新编程的能力和潜能,并与正常胚胎干(ES)细胞共享这种功能特性。

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