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Post-natal cardiomyocytes can generate iPS cells with an enhanced capacity toward cardiomyogenic re-differentation

机译:出生后的心肌细胞可以产生具有增强的心肌原性再分化能力的iPS细胞

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摘要

Adult mammalian cells can be reprogrammed to a pluripotent state by forcing the expression of a few embryonic transcription factors. The resulting induced pluripotent stem (iPS) cells can differentiate into cells of all three germ layers. It is well known that post-natal cardiomyocytes (CMs) lack the capacity to proliferate. Here, we report that neonatal CMs can be reprogrammed to generate iPS cells that express embryonic-specific markers and feature gene-expression profiles similar to those of mouse embryonic stem (mES) cell and cardiac fibroblast (CF)-derived iPS cell populations. CM-derived iPS cells are able to generate chimeric mice and, moreover, re-differentiate toward CMs more efficiently then either CF-derived iPS cells or mES cells. The increased differentiation capacity is possibly related to CM-derived iPS cells retaining an epigenetic memory of the phenotype of their founder cell. CM-derived iPS cells may thus lead to new information on differentiation processes underlying cardiac differentiation and proliferation.
机译:通过强迫一些胚胎转录因子的表达,可以将成年哺乳动物细胞重编程为多能状态。所得的诱导多能干(iPS)细胞可以分化为所有三个胚层的细胞。众所周知,出生后的心肌细胞(CM)缺乏增殖能力。在这里,我们报告新生儿CMs可以重新编程以生成表达胚胎特异性标记物并具有类似于小鼠胚胎干(mES)细胞和心脏成纤维细胞(CF)衍生的iPS细胞群体的基因表达谱的iPS细胞。衍生自CM的iPS细胞能够产生嵌合小鼠,而且与衍生自CF的iPS细胞或mES细胞相比,能够更有效地向CM重新分化。增加的分化能力可能与保留其基础细胞表型的表观遗传记忆的CM衍生iPS细胞有关。因此,源自CM的iPS细胞可能导致有关心脏分化和增殖的分化过程的新信息。

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