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Induced Pluripotent Stem Cells: Generation Strategy and Epigenetic Mystery behind Reprogramming

机译:诱导多能干细胞:在重编程后面的生成策略和表观遗传神秘

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Possessing the ability of self-renewal with immortalization and potential for differentiation into different cell types, stem cells, particularly embryonic stem cells (ESC), have attracted significant attention since their discovery. As ESC research has played an essential role in developing our understanding of the mechanisms underlying reproduction, development, and cell (de) differentiation, significant efforts have been made in the biomedical study of ESC in recent decades. However, such studies of ESC have been hampered by the ethical issues and technological challenges surrounding them, therefore dramatically inhibiting the potential applications of ESC in basic biomedical studies and clinical medicine. Induced pluripotent stem cells (iPSCs), generated from the reprogrammed somatic cells, share similar characteristics including but not limited to the morphology and growth of ESC, self-renewal, and potential differentiation into various cell types. The discovery of the iPSC, unhindered by the aforementioned limitations of ESC, introduces a viable alternative to ESC. More importantly, the applications of iPSC in the development of disease models such as neurodegenerative disorders greatly enhance our understanding of the pathogenesis of such diseases and also facilitate the development of clinical therapeutic strategies using iPSC generated from patient somatic cells to avoid an immune rejection. In this review, we highlight the advances in iPSCs generation methods as well as the mechanisms behind their reprogramming. We also discuss future perspectives for the development of iPSC generation methods with higher efficiency and safety.
机译:具有自我更新的能力和不同细胞类型,干细胞,特别是胚胎干细胞(ESC)以来的潜力,自于其发现以来引起了重大关注。随着ESC研究在制定我们对潜在生殖的机制,发展和细胞(DE)差异化的理解方面发挥了重要作用,近几十年来对ESC的生物医学研究取得了重大努力。然而,这些ESC的研究受到了伦理问题和围绕它们的技术挑战的阻碍,因此显着抑制了ESC在基础生物医学研究和临床医学中的潜在应用。从重编程的体细胞产生的诱导多能干细胞(IPSC)共享类似的特征,包括但不限于Esc,自我更新和潜在分化成各种细胞类型的形态和生长。通过上述Esc的局限性地发现IPSC的发现引入了ESC的可行替代品。更重要的是,IPSC在神经变性障碍等疾病模型中的应用大大提高了我们对这些疾病发病机制的理解,并促进了使用从患者体细胞产生的IPSC产生的临床治疗策略的发展,以避免免疫排斥。在这篇综述中,我们突出了IPSCS生成方法的进步以及重新编程后面的机制。我们还讨论了具有更高效率和安全性的IPSC生成方法的未来观点。

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