Instituto Cajal, Consejo Superior de Investigaciones Científicas (CSIC), Madrid, Spain.
PLoS One. 2013;8(1):e53594. doi: 10.1371/journal.pone.0053594. Epub 2013 Jan 7.
Neurosphere cell culture is a commonly used model to study the properties and potential applications of neural stem cells (NSCs). However, standard protocols to culture NSCs have yet to be established, and the mechanisms underlying NSC survival and maintenance of their undifferentiated state, in response to the growth factors FGF-2 and EGF are not fully understood. Using cultures of embryonic and adult olfactory bulb stem cells (eOBSCs and aOBSCs), we analyzed the consequences of FGF-2 and EGF addition at different intervals on proliferation, cell cycle progression, cell death and differentiation, as well as on global gene expression. As opposed to cultures supplemented daily, addition of FGF-2 and EGF every 4 days significantly reduced the neurosphere volume and the total number of cells in the spheres, mainly due to increased cell death. Moreover, partial FGF-2 and EGF deprivation produced an increase in OBSC differentiation during the proliferative phase. These changes were more evident in aOBSC than eOBSC cultures. Remarkably, these effects were accompanied by a significant upregulation in the expression of endogenous Fgf-2 and genes involved in cell death and survival (Cryab), lipid catabolic processes (Pla2g7), cell adhesion (Dscaml1), cell differentiation (Dscaml1, Gpr17, S100b, Ndrg2) and signal transduction (Gpr17, Ndrg2). These findings support that a daily supply of FGF-2 and EGF is critical to maintain the viability and the undifferentiated state of NSCs in culture, and they reveal novel molecular hallmarks of NSC death, survival and the initiation of differentiation.
神经球细胞培养是一种常用的模型,用于研究神经干细胞(NSC)的特性和潜在应用。然而,尚未建立培养 NSC 的标准方案,并且对于 FGF-2 和 EGF 响应下 NSC 存活和维持其未分化状态的机制还不完全了解。使用胚胎和成年嗅球干细胞(eOBSC 和 aOBSC)的培养物,我们分析了在不同时间间隔添加 FGF-2 和 EGF 对增殖、细胞周期进程、细胞死亡和分化以及整体基因表达的影响。与每天补充培养基的培养物相反,每隔 4 天添加 FGF-2 和 EGF 会显著降低神经球的体积和球体中的细胞总数,主要是由于细胞死亡增加所致。此外,在增殖阶段部分去除 FGF-2 和 EGF 会导致 OBSC 分化增加。与 eOBSC 培养物相比,这些变化在 aOBSC 培养物中更为明显。值得注意的是,这些变化伴随着内源性 Fgf-2 的表达显著上调以及与细胞死亡和存活(Cryab)、脂质代谢过程(Pla2g7)、细胞黏附(Dscaml1)、细胞分化(Dscaml1、Gpr17、S100b、Ndrg2)和信号转导(Gpr17、Ndrg2)相关基因的上调。这些发现支持每天提供 FGF-2 和 EGF 对于维持 NSCs 在培养物中的活力和未分化状态至关重要,并且它们揭示了 NSC 死亡、存活和分化启动的新分子特征。