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Evolution of induced pluripotent stem cell technology.

机译:诱导多能干细胞技术的发展。

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PURPOSE OF REVIEW: Induced pluripotent stem cell (iPSC) technology, which uses defined transcription factors to reprogram somatic cells to become pluripotent cells, offers a significant technical simplicity and enables generation of patient-specific pluripotent stem cells with reduced ethical concerns. This review will focus on recent progresses in understanding of iPSCs and improved methods of generating iPSCs. RECENT FINDINGS: Whereas iPSCs generated from a variety of cell sources were found to be nearly identical functionally to embryonic stem cells, some differences were also identified and remain to be characterized. Meanwhile, new methods of generating iPSCs with minimal or no exogenous genetic modifications to cells have advanced rapidly. SUMMARY: iPSC technology provides unprecedented opportunities in biomedical research and regenerative medicine. However, there remain a great deal to learn about iPSC safety, the reprogramming mechanisms, and better ways to direct a specific reprogramming process. The iPSC field will flourish on its mechanistic studies, iPSC-based disease modeling, and identification of new small molecules that modulate reprogramming.
机译:审查的目的:诱导多能干细胞(iPSC)技术,它使用定义的转录因子将体细胞重编程为多能细胞,提供了显着的技术简便性,并能够减少伦理问题地生成患者特异性多能干细胞。这次审查将集中在了解iPSC的最新进展和产生iPSC的改进方法上。最近的发现:尽管发现从多种细胞来源产生的iPSC在功能上与胚胎干细胞几乎相同,但也发现了一些差异,并有待鉴定。同时,产生对细胞具有最少或没有外源遗传修饰的iPSC的新方法已经迅速发展。简介:iPSC技术为生物医学研究和再生医学提供了前所未有的机会。但是,关于iPSC安全性,重编程机制以及指导特定重编程过程的更好方法,还有很多知识要学习。 iPSC领域将因其机理研究,基于iPSC的疾病建模以及识别可调节重编程的新小分子而蓬勃发展。

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