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Reprogramming non-human primate somatic cells into functional neuronal cells by defined factors

机译:通过定义的因素将非人类的灵长类体细胞重编程为功能性神经元细胞

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摘要

BackgroundThe common marmoset (Callithrix jacchus) is a New World primate sharing many similarities with humans. Recently developed technology for generating transgenic marmosets has opened new avenues for faithful recapitulation of human diseases, which could not be achieved in rodent models. However, the longer lifespan of common marmosets compared with rodents may result in an extended period for in vivo analysis of common marmoset disease models. Therefore, establishing rapid and efficient techniques for obtaining neuronal cells from transgenic individuals that enable in vitro analysis of molecular mechanisms underlying diseases are required. Recently, several groups have reported on methods, termed direct reprogramming, to generate neuronal cells by defined factors from somatic cells of various kinds of species, including mouse and human. The aim of the present study was to determine whether direct reprogramming technology was applicable to common marmosets.
机译:背景普通mar(Callithrix jacchus)是与人类共享许多相似之处的新大陆灵长类动物。最近开发的用于产生转基因mar猴的技术为忠实地重述人类疾病开辟了新途径,这在啮齿动物模型中是无法实现的。但是,普通mar猴与啮齿类动物相比寿命更长,可能会导致对普通mar猴疾病模型进行体内分析的时间延长。因此,需要建立快速有效的技术来从转基因个体获得神经元细胞,从而能够对疾病的分子机制进行体外分析。最近,一些研究小组报告了一种方法,称为直接重编程,可以通过定义的因子从各种物种的体细胞(包括小鼠和人类)中产生神经元细胞。本研究的目的是确定直接重编程技术是否适用于普通mar猴。

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