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Chapter 14 New Treatment Modalities by Disease-Specific and Patient-Specific Induced Pluripotent Stem Cells

机译:第14章疾病特异性和患者特异性诱导多能干细胞的新治疗方式

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The broadly accepted and deeply rooted belief in developmental biology was that terminally differentiated cells had lost the potential to produce other cell types. In 2006, however, mouse somatic cells were reprogrammed as induced pluripotent stem (iPS) cells that resembled embryonic stem cells. This therapeutic promise is being challenged by thousand of researchers worldwide to understand the ability of these cells to reverse biological clocks. Utilizing both "forward" and "reverse" genetic approaches with the aid of iPS cells offers exciting prospects for dissecting molecular mechanisms of commitment and differentiation in a cell lineage. This discovery will help clarify our understanding of the rewired regulatory networks active in somatic and pluripotent cells.
机译:在发育生物学的广泛接受和深深的信仰是终端分化的细胞失去了产生其他细胞类型的潜力。然而,在2006年,小鼠体细胞被重新编程为类似胚胎干细胞的诱导多能干(IPS)细胞。这种治疗承诺受到全球数千个研究人员的挑战,以了解这些细胞对逆转生物钟的能力。利用IPS细胞的借助于“向前”和“反向”遗传方法提供了用于解除细胞谱系中承诺和分化的分子机制的令人兴奋的前景。这一发现将有助于澄清我们对体细胞和多能细胞中活性的重带监管网络的理解。

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