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首页> 外文期刊>Biological psychiatry >Stress and Loss of Adult Neurogenesis Differentially Reduce Hippocampal Volume
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Stress and Loss of Adult Neurogenesis Differentially Reduce Hippocampal Volume

机译:成人神经发生的压力和丧失差异降低海马体积

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摘要

Abstract Background Hippocampal volume loss is a hallmark of clinical depression. Chronic stress produces volume loss in the hippocampus in humans and atrophy of CA3 pyramidal cells and suppression of adult neurogenesis in rodents. Methods To investigate the relationship between decreased adult neurogenesis and stress-induced changes in hippocampal structure and volume, we compared the effects of chronic unpredictable restraint stress and inhibition of neurogenesis in a rat pharmacogenetic model. Results Chronic unpredictable restraint stress over 4 weeks decreased total hippocampal volume, reflecting loss of volume in all hippocampal subfields and in both dorsal and ventral hippocampus. In contrast, complete inhibition of adult neurogenesis for 4 weeks led to volume reduction only in the dentate gyrus. With prolonged inhibition of neurogenesis for 8 or 16 weeks, volume loss spread to the CA3 region, but not CA1. Combining stress and inhibition of adult neurogenesis did not have additive effects on the magnitude of volume loss but did produce a volume reduction throughout the hippocampus. One month of chronic unpredictable restraint stress and inhibition of adult neurogenesis led to atrophy of pyramidal cell apical dendrites in dorsal CA3 and to neuronal reorganization in ventral CA3. Stress also significantly affected granule cell dendrites. Conclusions The findings suggest that adult neurogenesis is required to maintain hippocampal volume but is not responsible for stress-induced volume loss.
机译:摘要背景海马体积损失是临床抑郁症的标志。慢性应力在人类中生成海马体积损失,以及Ca3金字塔细胞的萎缩和啮齿动物中成年神经发生的抑制。方法以研究成人神经发生和胁迫诱导的海马结构和体积变化之间的关系,比较了慢性不可预测的抑制应激和神经发生在大鼠药物发生模型中的影响。结果慢性不可预测的约束压力超过4周降低总海马体积,反映了所有海马子场和背部和腹侧海马的体积损失。相比之下,完全抑制成年神经发生4周,LEVES降低了齿状回塔鲁鲁斯。由于长期抑制神经发生,8或16周,体积损失扩散到Ca3区,但不是Ca1。组合应力和成年神经发生的抑制没有对体积损失的幅度没有添加效应,但在整个海马中产生体积减少。慢性不可预测的抑制应激和抑制成年神经发生的抑制导致背部Ca3中锥体细胞顶端树突的萎缩和腹侧Ca3中神经元重组。压力也显着影响颗粒细胞枝晶。结论研究表明,成年神经发生是保持海马体积但不对应激诱导的体积损失负责。

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