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Aging brain microenvironment decreases hippocampal neurogenesis through Wnt-mediated survivin signaling

机译:大脑微环境的老化通过Wnt介导的survivin信号传导减少海马神经发生

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Accumulating evidence suggests that adult hippocampal neurogenesis relies on the controlled and continued proliferation of neural progenitor cells (NPCs). With age, neurogenesis decreases through mechanisms that remain unclear but are believed to involve changes in the NPC microenvironment. Here, we provide evidence that NPC proliferation in the adult brain is in part regulated by astrocytes via Wnt signaling and that this cellular cross-talk is modified in the aging brain, leading to decreased proliferation of NPCs. Furthermore, we show that astrocytes regulate the NPC cell cycle by acting on the expression levels of survivin, a known mitotic regulator. Among cell cycle genes found down-regulated in aged NPCs, survivin was the only one that restored NPC proliferation in the aged brain. Our results provide a mechanism for the gradual loss of neurogenesis in the brain associated with aging and suggest that targeted modulation of survivin expression directly or through Wnt signaling could be used to stimulate adult neurogenesis.
机译:越来越多的证据表明,成年海马神经发生依赖于神经祖细胞(NPC)的受控和持续增殖。随着年龄的增长,神经发生通过尚不清楚的机制而减少,但据信其机制涉及NPC微环境的变化。在这里,我们提供的证据表明,成年大脑中NPC的增殖部分受到星形胶质细胞通过Wnt信号的调控,并且这种细胞串扰在衰老的大脑中被修饰,从而导致NPC的增殖减少。此外,我们表明星形胶质细胞通过作用于已知的有丝分裂调节剂survivin的表达水平来调节NPC细胞周期。在衰老的NPC中被下调的细胞周期基因中,存活蛋白是唯一恢复衰老的大脑中NPC增殖的基因。我们的结果提供了与衰老相关的大脑中神经发生逐渐丧失的机制,并建议直接或通过Wnt信号定向靶向调节survivin表达可用于刺激成人神经发生。

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