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Wnt/β-Catenin Signaling Promotes Differentiation of Ischemia-Activated Adult Neural Stem/Progenitor Cells to Neuronal Precursors

机译:Wnt /β-catenin信号传导促进缺血活化的成年神经茎/祖细胞对神经元前体的分化

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Modulating endogenous regenerative processes may represent a suitable treatment for central nervous system (CNS) injuries, such as stroke or trauma. Neural stem/progenitor cells (NS/PCs), which naturally reside in the subventricular zone (SVZ) of the adult brain, proliferate and differentiate to other cell types, and therefore may compensate the negative consequences of ischemic injury. The fate of NS/PCs in the developing brain is largely influenced by Wingless/Integrated (Wnt) signaling; however, its role in the differentiation of adult NS/PCs under ischemic conditions is still enigmatic. In our previous study, we identified the Wnt/β-catenin signaling pathway as a factor promoting neurogenesis at the expense of gliogenesis in neonatal mice. In this study, we used adult transgenic mice in order to assess the impact of the canonical Wnt pathway modulation (inhibition or hyper-activation) on NS/PCs derived from the SVZ, and combined it with the middle cerebral artery occlusion (MCAO) to disclose the effect of focal cerebral ischemia (FCI). Based on the electrophysiological properties of cultured cells, we first identified three cell types that represented in vitro differentiated NS/PCs – astrocytes, neuron-like cells, and precursor cells. Following FCI, we detected fewer neuron-like cells after Wnt signaling inhibition. Furthermore, the immunohistochemical analysis revealed an overall higher expression of cell-type-specific proteins after FCI, indicating increased proliferation and differentiation rates of NS/PCs in the SVZ. Remarkably, Wnt signaling hyper-activation increased the abundance of proliferating and neuron-like cells, while Wnt pathway inhibition had the opposite effect. Finally, the expression profiling at the single cell level revealed an increased proportion of neural stem cells and neuroblasts after FCI. These observations indicate that Wnt signaling enhances NS/PCs-based regeneration in the adult mouse brain following FCI, and supports neuronal differentiation in the SVZ.
机译:调节内源性再生过程可以代表中枢神经系统(CNS)损伤的合适处理,例如中风或创伤。神经茎/祖细胞(NS / PC),其天然存在于成年脑的子心瓣区(SVZ)中,增殖和分化为其他细胞类型,因此可以补偿缺血性损伤的负面后果。发展大脑中的NS / PC的命运主要受永久/集成(WNT)信号传导的影响;然而,它在缺血条件下成年人NS / PC的分化中的作用仍然是神秘的。在我们以前的研究中,我们鉴定了Wnt /β-catenin信号传导途径,作为促进神经发生在新生小鼠的胶质发生的因子。在这项研究中,我们使用成人转基因小鼠来评估规范Wnt途径调制(抑制或超激活)对来自SVZ的NS / PC的影响,并将其与中脑动脉闭塞(MCAO)组合给公开了局灶性脑缺血(FCI)的作用。基于培养细胞的电生理性质,首先鉴定了三种细胞类型,其在体外分化的Ns / PC - 星形胶质细胞,神经元样细胞和前体细胞中。在FCI之后,在WNT信号传导抑制后,我们检测到较少的神经元样细胞。此外,免疫组织化学分析显示FCI之后细胞型蛋白质的总体表达,表明SVZ中Ns / PC的增殖和分化率增加。值得注意的是,WNT信号传导超激活增加了增殖和神经元样细胞的丰度,而Wnt途径抑制具有相反的效果。最后,在单细胞水平下表达分析显示出在FCI之后的神经干细胞和神经细胞的比例增加。这些观察结果表明,WNT信号传导在FCI之后增强了成年小鼠脑中的NS / PC基再生,并支持SVZ中的神经元分化。

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