首页> 美国卫生研究院文献>Genetics and Molecular Biology >The gene expression profiles of induced pluripotent stem cells (iPSCs) generated by a non-integrating method are more similar to embryonic stem cells than those of iPSCs generated by an integrating method
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The gene expression profiles of induced pluripotent stem cells (iPSCs) generated by a non-integrating method are more similar to embryonic stem cells than those of iPSCs generated by an integrating method

机译:通过非整合方法生成的诱导多能干细胞(iPSC)的基因表达谱比通过整合方法生成的iPSC的基因表达谱更类似于胚胎干细胞。

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摘要

Induced pluripotent stem cells (iPSCs) obtained by the ectopic expression of defined transcription factors have tremendous promise and therapeutic potential for regenerative medicine. Many studies have highlighted important differences between iPSCs and embryonic stem cells (ESCs). In this work, we used meta-analysis to compare the global transcriptional profiles of human iPSCs from various cellular origins and induced by different methods. The induction strategy affected the quality of iPSCs in terms of transcriptional signatures. The iPSCs generated by non-integrating methods were closer to ESCs in terms of transcriptional distance than iPSCs generated by integrating methods. Several pathways that could be potentially useful for studying the molecular mechanisms underlying transcription factor-mediated reprogramming leading to pluripotency were also identified. These pathways were mostly associated with the maintenance of ESC pluripotency and cancer regulation. Numerous genes that are up-regulated during the induction of reprogramming also have an important role in the success of human preimplantation embryonic development. Our results indicate that hiPSCs maintain their pluripotency through mechanisms similar to those of hESCs.
机译:通过异位表达确定的转录因子获得的诱导多能干细胞(iPSC)对于再生医学具有巨大的希望和治疗潜力。许多研究强调了iPSC与胚胎干细胞(ESC)之间的重要区别。在这项工作中,我们使用荟萃分析来比较人类iPSC来自不同细胞起源并通过不同方法诱导的整体转录谱。诱导策略在转录签名方面影响了iPSC的质量。与通过整合方法产生的iPSC相比,通过非整合方法产生的iPSC在转录距离上更接近于ESC。还确定了可能对研究转录因子介导的重编程导致多能性的分子机制潜在的几种途径。这些途径主要与维持ESC多能性和癌症调节有关。在重编程诱导期间上调的许多基因在人类植入前胚胎发育的成功中也具有重要作用。我们的结果表明,hiPSC通过类似于hESC的机制维持其多能性。

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