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Activation of latent precursors in the hippocampus is dependent on long-term potentiation

机译:海马中潜在前体的激活取决于长期增强

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The recent discovery of a large latent population of precursor cells in the dentate gyrus of adult mice led us to investigate whether activation of this population is regulated by synaptic activity, thereby explaining the observation that environmental signals can affect neurogenesis. Using a variety of stimulation protocols, we found that only a long-term potentiation (LTP)-inducing protocol activated the latent precursor pool, leading to increased neurogenesis in the dentate gyrus. LTP induced by high-frequency stimulation (HFS) of the perforant pathway in vivo produced a two-fold increase in the number of neurospheres cultured from the stimulated hippocampus, compared with the unstimulated hippocampus. No increase in neurosphere number or neurogenesis was observed when the HFS failed to induce LTP. These results show that LTP can activate latent neural precursor cells in the adult mouse dentate gyrus, thereby providing a direct mechanism for regulating activity-driven neurogenesis. In the future, it may be possible to utilize such learning- or stimulation-induced neurogenesis to overcome disorders characterized by neuronal loss.. ? 2012 Macmillan Publishers Limited
机译:最近在成年小鼠的齿状回中发现了大量潜在的前体细胞,这促使我们研究该群体的激活是否受到突触活性的调节,从而解释了环境信号可以影响神经发生的现象。使用各种刺激方案,我们发现只有长期增强(LTP)诱导方案才能激活潜在的前体库,从而导致齿状回中神经发生的增加。与未刺激的海马体相比,体内穿孔路径的高频刺激(HFS)诱导的LTP使受刺激的海马体培养的神经球数量增加了两倍。当HFS未能诱导LTP时,未观察到神经球数目或神经发生增加。这些结果表明,LTP可以激活成年小鼠齿状回中的潜伏神经前体细胞,从而提供调节活性驱动神经发生的直接机制。将来,可能有可能利用这种学习或刺激引起的神经发生来克服以神经元丧失为特征的疾病。 2012 Macmillan Publishers Limited

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