首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Altered expression of microRNAs in the neuronal differentiation of human Wharton's Jelly mesenchymal stem cells
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Altered expression of microRNAs in the neuronal differentiation of human Wharton's Jelly mesenchymal stem cells

机译:在人舱涡轮果冻间充质干细胞神经元分化中改变了MicroRNA的表达

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摘要

Mesenchymal stem cells (MSCs) have the capacity to generate multiple tissues of mesodermal origin, and also have the potential to trans-differentiate into neurons. We isolated MSCs from the Wharton's jelly of the human umbilical cord (WJ-MSCs), and efficiently induced WJ-MSCs into neuron-like cells using a modified method. After neuronal induction for 12 days, most of WJ-MSCs expressed mature neuronal marker MAP2 (83 ±7%), and meanwhile some adopted neuronal morphology. WJ-MSCs also expressed Nestin (34± 6%), NSE (30 ± 5%), and GFAP (12 ±3%). Moreover, we used miRNA microarray to analyze the differentially expressed miRNAs in neuronal differentiation of WJ-MSCs. Microarray analysis revealed discrepant miRNA profiles in the uninduced WJ-MSCs and WJ-MSCs derived neurons. Six miRNAs were chosen for further qRT-PCR validation. Among these 6 miRNAs, four miRNAs (miR-1290, miR-26b, miR-194, and miR-124a) were up-regulated and 2 miRNAs (miR-4521 and miR-543) were down-regulated in the WJ-MSCs derived neurons. In conclusion, WJ-MSCs could be efficiently induced into neuron-like cells. More importantly, our findings suggested that miRNAs might play important roles in the neuronal differentiation of WI-MSCs.
机译:间充质干细胞(MSCs)具有产生多种脱模源性组织的能力,并且还具有转变成神经元的潜力。我们将MSC从沃顿尔果冻的人脐带(WJ-MSCs)的果冻隔离,并使用改进的方法将WJ-MSC有效地诱导WJ-MSC。在神经元诱导12天后,大多数WJ-MSCs表达成熟的神经元标记Map2(83±7%),同时有些采用神经元形态。 WJ-MSCs还表达Nestin(34±6%),NSE(30±5%)和GFAP(12±3%)。此外,我们使用miRNA微阵列分析WJ-MSCs的神经元分化中的差异表达的miRNA。微阵列分析显示了未受作用的WJ-MSCs和WJ-MSCs衍生神经元中的差异miRNA谱。选择六个miRNA用于进一步QRT-PCR验证。在这6 miRNA中,上调四个miRNA(miR-1290,miR-26b,miR-194和miR-124a),并且在Wj-MSC中下调2 miRNA(miR-4521和miR-543)衍生的神经元。总之,WJ-MSCs可以有效地诱导神经元样细胞。更重要的是,我们的研究结果表明MiRNA可能在Wi-MSCs的神经元分化中发挥重要作用。

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