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Partial Somatic to Stem Cell Transformations Induced By Cell-Permeable Reprogramming Factors

机译:细胞渗透性重编程因子诱导的部分体细胞向干细胞转化

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摘要

The production of pluripotent stem cells (iPSCs) for therapeutic applications will require practical methods to achieve tight temporal and quantitative control of reprogramming factor (RF) expression, while avoiding the mutagenic potential of gene transfer. Toward this end, we have developed cell-permeable RF proteins (CP-RFs) incorporating newly developed macromolecule transduction domains (MTDs). Treatment of human dermal fibroblasts (HDFs) with combinations of cell-permeable OCT4, SOX2, KLF4, CMYC and either NANOG or LIN28 proteins induced the outgrowth of stem cell-like colonies (iSCs). iSC colonies generated with CP-RFs resembled embryonic stem cells with regard to morphology, biomarker expression, and extended capacity for self-renewal, but failed to expand as iPSC or ES cell lines. Partial reprogramming appears to be a common response to protein-based delivery of programming factors into somatic cells.
机译:用于治疗应用的多能干细胞(iPSC)的生产将需要实用的方法,以实现对重编程因子(RF)表达的严格时间和定量控制,同时避免基因转移的诱变潜力。为此,我们开发了结合了新开发的大分子转导域(MTD)的细胞可渗透性RF蛋白(CP-RF)。用可渗透细胞的OCT4,SOX2,KLF4,CMYC和NANOG或LIN28蛋白的组合治疗人皮肤成纤维细胞(HDF)诱导干细胞样菌落(iSCs)的生长。 CP-RFs产生的iSC菌落在形态,生物标志物表达和扩展的自我更新能力方面类似于胚胎干细胞,但不能作为iPSC或ES细胞系扩增。部分重编程似乎是对基于蛋白质的编程因子向体细胞传递的常见反应。

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