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Sonic Hedgehog Effectively Improves Oct4-Mediated Reprogramming of Astrocytes into Neural Stem Cells

机译:Sonic Hedgehog有效地改善了十八次介导的星形胶质细胞的重编程到神经干细胞中

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摘要

Irreversible neuron loss following spinal cord injury (SCI) usually results in persistent neurological dysfunction. The generation of autologous neural stem cells (NSCs) holds great potential for neural replenishment therapies and drug screening in SCI. Our recent studies demonstrated that mature astrocytes from the spinal cord can directly revert back to a pluripotent state under appropriate signals. However, in previous attempts, the reprogramming of astrocytes into induced NSCs (iNSCs) was unstable, inefficient, and frequently accompanied by generation of intermediate precursors. It remained unknown how to further increase the efficiency of astrocyte reprogramming into iNSCs. Here, we show that mature astrocytes could be directly converted into iNSCs by a single transcription factor, Oct4, and that the iNSCs displayed typical neurosphere morphology, authentic NSC gene expression, self-renewal capacity, and multipotency. Strikingly, Oct4-driven reprogramming of astrocytes into iNSCs was potentiated with continuous sonic hedgehog (Shh) stimulation, as demonstrated by a sped-up reprogramming and increased conversion efficiency. Moreover, the iNSC-derived neurons possessed functionality as neurons. Importantly, crosstalk between Sox2/Shh-targeted downstream signals and phosphatidylinositol 3-kinase/cyclin-dependent kinase 2/Smad ubiquitin regulatory factor 2 (PI3K/Cdk2/Smurf2) signaling is likely involved in the mechanisms underlying this cellular event. The highly efficient reprogramming of astrocytes to generate iNSCs will provide an alternative therapeutic approach for SCI using autologous cells.
机译:脊髓损伤(SCI)后不可逆的神经元损失通常导致持续的神经功能障碍。生成的自体神经干细胞(NSCs)具有神经补充疗法和SCI中药物筛选的巨大潜力。我们最近的研究表明,来自脊髓的成熟星形胶质细胞可以在适当的信号下直接恢复到多能状态。然而,在先前的尝试中,星形胶质细胞的重新编程成诱导的NSCs(INSCS)是不稳定的,低效的,并且经常通过产生中间前体的产生。它仍然是如何进一步提高星形胶质细胞重新编程为INSCS的效率。在这里,我们表明成熟的星形胶质细胞可以通过单一转录因子,10月,并展示INSCS显示典型的神经圈形态,真正的NSC基因表达,自我更新能力和多种性能。引人注目的是,OCT4驱动的星形胶质细胞重新编程到INSCs中,用连续的声音刺猬(SHH)刺激加强,如加速重编程和增加的转化效率所示。此外,INSC衍生的神经元具有神经元的功能。重要的是,SOx2 / SHH靶向下游信号和磷脂酰肌醇3-激酶/细胞周期蛋白依赖性激酶2 / SMAD泛素调节因子2(PI3K / CDK2 / SMURF2)信号传导的串扰可能参与该细胞事件的机制。通过自体细胞,生成INCES的星形胶质细胞的高效重新编程将为SCI提供替代治疗方法。

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