Evaluating cell reprogramming, differentiation and conversion technologies in neuroscience.

Evaluating cell reprogramming, differentiation and conversion technologies in neuroscience.
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DOI:
10.1038/nrn.2016.46
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发表时间:
2016-07
期刊:
Nature reviews. Neuroscience
影响因子:
--
通讯作者:
Gage FH
Gage FH
中科院分区:
其他
文献类型:
--
作者:
Mertens J;Marchetto MC;Bardy C;Gage FH

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长期以来,用于实验的活人脑细胞的稀缺限制了我们研究复杂的人类神经系统疾病和阐明基本神经科学机制的能力。十年前,将人类体细胞重新编程为诱导多能干细胞的方法的开发使得能够在体外从几乎任何人类个体中产生多种神经细胞。通过重编程和直接转化为诱导神经元来产生更稳健和定义的神经细胞类型的方法的发展导致了各种基于人类重编程的神经疾病模型的建立。
The scarcity of live human brain cells for experimental access has for a long time limited our ability to study complex human neurological disorders and elucidate basic neuroscientific mechanisms. A decade ago, the development of methods to reprogramme somatic human cells into induced pluripotent stem cells enabled the in vitro generation of a wide range of neural cells from virtually any human individual. The growth of methods to generate more robust and defined neural cell types through reprogramming and direct conversion into induced neurons has led to the establishment of various human reprogramming-based neural disease models.
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