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首页> 外文期刊>Cellular Physiology and Biochemistry >EphB4 Regulates Self-Renewal, Proliferation and Neuronal Differentiation of Human Embryonic Neural Stem Cells in Vitro
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EphB4 Regulates Self-Renewal, Proliferation and Neuronal Differentiation of Human Embryonic Neural Stem Cells in Vitro

机译:EphB4调节人胚神经干细胞的自我更新,增殖和神经元分化。

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>Background/Aims: EphB4 belongs to the largest family of Eph receptor tyrosine kinases. It contributes to a variety of pathological progresses of cancer malignancy. However, little is known about its role in neural stem cells (NSCs). This study examined whether EphB4 is required for proliferation and differentiation of human embryonic neural stem cells (hNSCs) in vitro. Methods: We up- and down-regulated EphB4 expression in hNSCs using lentiviral over-expression and shRNA knockdown constructs and then investigated the influence of EphB4 on the properties of hNSCs. Results: Our results show that shRNA-mediated EphB4 reduction profoundly impaired hNSCs self-renewal and proliferation. Furthermore, detection of differentiation revealed that knockdown of EphB4 inhibited hNSCs differentiation towards a neuronal lineage and promoted hNSCs differentiation to glial cells. In contrast, EphB4 overexpression promoted hNSCs self-renewal and proliferation, further induced hNSCs differentiation towards a neuronal lineage and inhibited hNSCs differentiation to glial cells. Moreover, we found that EphB4 regulates cell proliferation mediated by the Abl-CyclinD1 pathway. Conclusion: These studies provide strong evidence that fine tuning of EphB4 expression is crucial for the proliferation and neuronal differentiation of hNSCs, suggesting that EphB4 might be an interesting target for overcoming some of the therapeutic limitations of neuronal loss in brain diseases.
机译:> 背景/目的: EphB4属于Eph受体酪氨酸激酶的最大家族。它有助于癌症恶性的多种病理进展。但是,关于它在神经干细胞(NSC)中的作用知之甚少。这项研究检查了EphB4是否在体外人类胚胎神经干细胞(hNSCs)的增殖和分化中是必需的。 方法: 我们使用慢病毒过度表达和shRNA敲除构建体上调和下调hNSC中EphB4的表达,然后研究EphB4对hNSCs特性的影响。 结果: 我们的结果表明,shRNA介导的EphB4减少严重损害了hNSC的自我更新和增殖。此外,分化的检测显示,EphB4的敲低抑制了hNSCs向神经元谱系的分化,并促进了hNSCs向神经胶质细胞的分化。相反,EphB4过表达促进hNSC的自我更新和增殖,进一步诱导hNSC分化为神经元谱系,并抑制hNSC分化为神经胶质细胞。此外,我们发现EphB4调节由Abl-CyclinD1途径介导的细胞增殖。 结论: 这些研究提供了有力的证据,表明对EphB4表达的微调对于hNSC的增殖和神经元分化至关重要,这表明EphB4可能是克服某些HNSC的有趣靶标脑疾病中神经元丢失的治疗局限性。

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