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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Induction of pluripotent stem cells from adult somatic cells by protein-based reprogramming without genetic manipulation.
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Induction of pluripotent stem cells from adult somatic cells by protein-based reprogramming without genetic manipulation.

机译:通过基于蛋白质重编程的未经遗传操作,从成年细胞诱导来自成年细胞的多能干细胞。

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The concept of reprogramming of somatic cells has opened a new era in regenerative medicine. Transduction of defined factors has successfully achieved pluripotency. However, during the generation process of induced pluripotent stem (iPS) cells, genetic manipulation of certain factors may cause tumorigenicity, which limits further application. We report that that a single transfer of embryonic stem (ES) cell-derived proteins into primarily cultured adult mouse fibroblasts, rather than repeated transfer or prolonged exposure to materials, can achieve full reprogramming up to the pluripotent state without the forced expression of ectopic transgenes. During the process, gene expression and epigenetic status were converted from somatic to ES-equivalent status. We verified that protein-based reprogramming was neither by the contamination of protein donor ES cell nor by DNA/RNA from donor ES cell. Protein-iPS cells were biologically and functionally very similar to ES cells and differentiated into 3 germ layers in vitro. Furthermore, protein-iPS cells possessed in vivo differentiation (well-differentiated teratoma formation) and development (chimeric mice generation and a tetraploid blastocyst complementation) potentials. Our results provide an alternative and safe strategy for the reprogramming of somatic cells that can be used to facilitate pluripotent stem cell-based cell therapy.
机译:体细胞重新编程的概念在再生医学中开辟了一种新的时代。改造了多能因因素的转导。然而,在诱导多能干(IPS)细胞的生成过程中,某些因素的遗传操纵可能导致致致致瘤性,这限制了进一步的应用。我们认为,单一转移胚胎干细胞衍生的蛋白质主要培养的成年小鼠成纤维细胞,而不是反复转移或延长对材料的暴露,可以完全重编程,而没有强迫表达异位转基因的强迫表达。在此过程中,基因表达和表观遗传状态从体细胞转化为ES相同状态。我们验证了基于蛋白质的重新编程既不是通过来自供体ES细胞的DNA / RNA污染蛋白质供体ES细胞。蛋白质-IPS细胞在生物学上且功能非常相似于ES细胞并在体外分化为3种胚层。此外,体内分化(良好分化的畸形瘤形成)和发育(嵌合小鼠生成和四倍体胚泡互补)电位的蛋白质-IPS细胞。我们的结果提供了可用于促进基于多能干细胞的细胞疗法的体细胞重新编程的替代和安全策略。

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