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Direct neuronal reprogramming of olfactory ensheathing cells for CNS repair

机译:用于CNS修复的嗅鞘细胞的直接神经元重编程

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摘要

Direct conversion of readily available non-neural cells from patients into induced neurons holds great promise for neurological disease modeling and cell-based therapy. Olfactory ensheathing cells (OECs) is a unique population of glia in olfactory nervous system. Based on the regeneration-promoting properties and the relative clinical accessibility, OECs are attracting increasing attention from neuroscientists as potential therapeutic agents for use in neural repair. Here, we report that OECs can be directly, rapidly and efficiently reprogrammed into neuronal cells by the single transcription factor Neurogenin 2 (NGN2). These induced cells exhibit typical neuronal morphologies, express multiple neuron-specific markers, produce action potentials, and form functional synapses. Genome-wide RNA-sequencing analysis shows that the transcriptome profile of OECs is effectively reprogrammed towards that of neuronal lineage. Importantly, these OEC-derived induced neurons survive and mature after transplantation into adult mouse spinal cords. Taken together, our study provides a direct and efficient strategy to quickly obtain neuronal cells from adult OECs, suggestive of promising potential for personalized disease modeling and cell replacement-mediated therapeutic approaches to neurological disorders.
机译:将患者的易于可用的非神经细胞直接转化为诱导神经元对神经疾病建模和基于细胞的治疗具有很大的承担。嗅鞘细胞(OECs)是嗅神经系统中的独特胶质植物。基于再生促进性能和相对临床可用性,OECS正在吸引神经科学家的越来越关注,作为用于神经修复的潜在治疗剂。在这里,我们认为OEC可以通过单一转录因子神经原素2(NGN2)直接,快速和有效地重新编程为神经元细胞。这些诱导细胞表现出典型的神经元形态,表达多个神经元特异性标记,产生作用电位,形成功能突触。基因组RNA测序分析表明,OECs的转录组曲线有效地重新编程为神经元谱系。重要的是,这些OEC衍生的诱导的神经元在移植到成年小鼠脊髓后存活和成熟。在一起,我们的研究提供了一种直接和有效的策略,可以快速从成人OEC获得神经元细胞,暗示具有个性化疾病建模和细胞替代介导的神经系统疾病的治疗方法的有希望的潜力。

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