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Cell reprogramming: expectations and challenges for chemistry in stem cell biology and regenerative medicine.

机译:细胞重新编程:干细胞生物学和再生医学中化学的期望与挑战。

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The possibility of reprogramming adult somatic cells into pluripotent stem cells (iPSCs) has generated a renewed interest into stem cell research and promises to overcome several key issues, including the ethical concerns of using human embryonic stem cells and the difficulty of obtaining large numbers of adult stem cells (Belmonte et al., Nat Rev Genet, 2009). This approach is also not free from challenges like the mechanism of the reprogramming process, which has yet to be elucidated, and the warranties for safety of generated pluripotent cells, especially in view of their possible therapeutic use. Very recently, several new reprogramming methods have surfaced, which seem to be more appropriate than genetic reprogramming. Particularly, chemically induced pluripotent cells (CiPSs), obtained with recombinant proteins or small synthetic molecules, may represent a valid approach, simpler and possibly safer than the other ones.
机译:将成年细胞重编程为多能干细胞(IPSC)的可能性已经为干细胞研究产生了重新的兴趣,并承诺克服几个关键问题,包括使用人胚胎干细胞的道德问题和获得大量成年人的难度 干细胞(Belmonte等,Nat Rev Genet,2009)。 这种方法也没有像重新编程过程机制的挑战,尚未阐明,以及产生多能细胞的安全保证,特别是考虑到他们可能的治疗用途。 最近,几种新的重新编程方法已经浮出水面,似乎比遗传重编程更合适。 特别地,用重组蛋白或小合成分子获得的化学诱导的多能细胞(芯片)可以代表一个有效的方法,更简单,并且可能比另一个更安全。

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