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首页> 外文期刊>International Journal of Molecular Sciences >Chemically Induced Reprogramming of Somatic Cells to Pluripotent Stem Cells and Neural Cells
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Chemically Induced Reprogramming of Somatic Cells to Pluripotent Stem Cells and Neural Cells

机译:化学诱导的体细胞重编程为多能干细胞和神经细胞

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The ability to generate transplantable neural cells in a large quantity in the laboratory is a critical step in the field of developing stem cell regenerative medicine for neural repair. During the last few years, groundbreaking studies have shown that cell fate of adult somatic cells can be reprogrammed through lineage specific expression of transcription factors (TFs)-and defined culture conditions. This key concept has been used to identify a number of potent small molecules that could enhance the efficiency of reprogramming with TFs. Recently, a growing number of studies have shown that small molecules targeting specific epigenetic and signaling pathways can replace all of the reprogramming TFs. Here, we provide a detailed review of the studies reporting the generation of chemically induced pluripotent stem cells (ciPSCs), neural stem cells (ciNSCs), and neurons (ciN). We also discuss the main mechanisms of actions and the pathways that the small molecules regulate during chemical reprogramming.
机译:在实验室中产生大量可移植神经细胞的能力是开发用于神经修复的干细胞再生医学领域的关键步骤。在过去的几年中,开创性研究表明,成年体细胞的细胞命运可以通过转录因子(TFs)的谱系特异性表达和确定的培养条件来重新编程。这个关键概念已被用来识别许多有效的小分子,这些小分子可以提高TFs重新编程的效率。最近,越来越多的研究表明,靶向特定表观遗传和信号通路的小分子可以替代所有重编程的TF。在这里,我们对报告化学诱导的多能干细胞(ciPSCs),神经干细胞(ciNSCs)和神经元(ciN)生成的研究进行了详细回顾。我们还将讨论化学重编程过程中小分子调节的主要作用机理和途径。

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