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首页> 外文期刊>International journal of molecular medicine >Comparative analysis of human embryonic stem cell-derived neural stem cells as an in vitro human model
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Comparative analysis of human embryonic stem cell-derived neural stem cells as an in vitro human model

机译:人胚胎干细胞衍生神经干细胞作为体外人体模型的比较分析

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Alternative cell models of human neural stem cells (hNSCs) have been developed and used for investigations ranging from in vitro experiments to in vivo clinical studies. However, a cell model capable of mimicking the ?normal state of hNSCs is mandatory in order to extrapolate the results of these studies to humans. In the present study, to select a more suitable hNSC model for developing human-based experimental platforms, two representative hNSC types were compared, namely human embryonic stem cell (hESC)-derived hNSCs and ReNcell CX cells, which are well-characterized immortalized hNSC lines. The hNSCs, differentiated from hESCs via human neuroectodermal sphere (hNES) formation, recapitulated the molecular and cellular phenotypes of hNSCs, including NSC marker expression and terminal neuronal differentiation potential. Comparative analyses of the transcriptome profiles of the hESC-derived hNESs and ReNcell CX hNSCs showed that the differentiated hNESs were analogous to the ReNcell CX cells, as demonstrated by principal component analysis and hierarchical sample clustering. The hNSC-specific transcriptome was presented, comprising commonly expressed transcripts between hNESs derived from hESCs and ReNcell CX cells. To elucidate the molecular mechanisms associated with the hNSC identity, the hNSC-specific transcriptome was analyzed using pathway and functional annotation clustering analyses. The results suggested that hESC-derived hNESs, an expandable and accessible cell source, may be used as a relevant hNSC model in a wide range of neurological investigations.
机译:已经开发了人神经干细胞(HNSCs)的替代细胞模型,并用于研究在体外临床研究中的体外实验的研究。然而,能够模拟HNSCs的正常状态的细胞模型是强制性的,以便将这些研究的结果推断给人类。在本研究中,为了开发用于开发基于人的实验平台的更合适的HNSC模型,比较了两个代表性的HNSC类型,即人胚胎干细胞(HESC)的HNSCs和Rencell CX细胞,其特征在于永生化HNSC线条。通过人神经分区球体(HENS)形成的HNSCs与HESCS分化,重新覆盖HNSCs的分子和细胞表型,包括NSC标记表达和末端神经元分化电位。 HESC衍生的HNY和RenceL CX HNSCs的转录组谱的对比分析表明,分化的HNY类似于Rencell CX细胞,如主成分分析和分级样本聚类所证明。提出了HNSC特异性转录组,包含来自HESC和Rencell CX细胞的HNY之间的常见转录物。为了阐明与HNSC同一性相关的分子机制,使用途径和功能注释聚类分析分析HNSC特异性转录组。结果表明,HESC衍生的HNY,可扩张性和可触及的细胞源,可用于广泛的神经学研究中的相关HNSC模型。

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