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Generation and expansion of highly pure motor neuron progenitors from human pluripotent stem cells

机译:人类多能干细胞产生和扩增高纯度运动神经元祖细胞

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Human pluripotent stem cells (hPSCs) have opened new opportunities for understanding human development, modelling disease processes and developing new therapeutics. However, these applications are hindered by the low efficiency and heterogeneity of cell types, such as motorneurons (MNs), differentiated from hPSCs as well as our inability to maintain the potency of lineage-committed progenitors. Here by using a combination of small molecules that regulate multiple signalling pathways, we develop a method to guide human embryonic stem cells to a near-pure population (>95%) of motor neuron progenitors (MNPs) in 12 days, and an enriched population (>90%) of functionally mature MNs in an additional 16 days. More importantly, the MNPs can be expanded for at least five passages so that a single MNP can be amplified to 1 x 10(4). This method is reproducible in human-induced pluripotent stem cells and is applied to model MN-degenerative diseases and in proof-of-principle drug-screening assays.
机译:人类多能干细胞(hPSC)为理解人类发育,模拟疾病过程和开发新疗法开辟了新的机会。但是,这些应用受到与hPSC区分的细胞类型(例如运动神经元(MN))的低效率和异质性以及我们无法维持谱系定型祖细胞效力的阻碍。在这里,通过使用调节多个信号通路的小分子组合,我们开发了一种方法,可在12天之内将人类胚胎干细胞引导至运动神经元祖细胞(MNP)的近乎纯净的群体(> 95%),并形成富集(> 90%)功能成熟的MN在另外16天内。更重要的是,MNP可以扩展至少5个通道,以便单个MNP可以放大到1 x 10(4)。该方法在人诱导的多能干细胞中可重现,可用于模型MN变性疾病和原理验证药物筛选测定中。

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