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Induced neural stem cells (iNSCs) in neurodegenerative diseases.

机译:在神经退行性疾病中诱导神经干细胞(iNSC)。

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Recent advances in somatic cell reprogramming is one of the most important developments in neuroscience in the last decades since it offers for the first time the opportunity to work with disease/patient-specific neurons or other neural cell types. Induced pluripotent stem cells (iPSCs) can be differentiated into all cell types of the body enabling investigations not only on neurons but also on muscle or endothelial cells which are cell types often also of great interest in neurodegenerative diseases. The novel technology of direct lineage conversion of somatic cells into neurons (induced neurons; iNs) or into expandable multipotent neural stem cells (induced neural stem cells; iNSCs) provides interesting alternatives to the iPSC technology. These techniques have the advantage of easier cell culture, but only neurons (iNs) or neuroectodermal cells (iNSCs) can be generated. Although there are several open questions coming along with these new neural cell types, they hold great promises for both cell replacement and cell modelling of neurodegenerative diseases.
机译:体细胞重编程的最新进展是近几十年来神经科学领域最重要的发展之一,因为它首次为与疾病/患者特定的神经元或其他神经细胞类型合作提供了机会。诱导多能干细胞(iPSC)可以分化为人体的所有细胞类型,从而不仅可以对神经元进行研究,而且还可以对肌肉或内皮细胞进行研究,而这些细胞或细​​胞通常也是神经退行性疾病中非常感兴趣的细胞类型。将体细胞直接谱系转化为神经元(诱导神经元; iNs)或可扩展的多能神经干细胞(诱导神经干细胞; iNSC)的新技术为iPSC技术提供了有趣的替代方法。这些技术具有易于培养的优势,但是只能生成神经元(iNs)或神经外胚层细胞(iNSCs)。尽管这些新的神经细胞类型伴随着一些悬而未决的问题,但它们对于神经退行性疾病的细胞置换和细胞建模都具有广阔的前景。

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