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首页> 外文期刊>Brain: A journal of neurology >Accuracy of hippocampal network activity is disrupted by neuroinflammation: rescue by memantine.
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Accuracy of hippocampal network activity is disrupted by neuroinflammation: rescue by memantine.

机译:神经炎症破坏海马网络活动的准确性:美金刚可以挽救海马网络活动的准确性。

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摘要

Understanding how the hippocampus processes episodic memory information during neuropathological conditions is important for treatment and prevention applications. Previous data have shown that during chronic neuroinflammation the expression of the plasticity related behaviourally-induced immediate early gene Arc is altered within the CA3 and the dentate gyrus; both of these hippocampal regions show a pronounced increase in activated microglia. Low doses of memantine, a low to moderate affinity open channel uncompetitive N-Methyl-d-aspartate receptor antagonist, reduce neuroinflammation, return Arc expression to control levels and attenuate cognitive deficits induced by lipopolysaccharide. Here we investigate whether neuroinflammation affects the accuracy of information processing in the CA3 and CA1 hippocampal regions and if this is modified by memantine treatment. Using the immediate early gene-based brain-imaging method called cellular analysis of temporal activity by fluorescence in situ hybridization, it is possible to detect primary transcripts at the genomic alleles; this provides exceptional temporal and cellular resolution and facilitates the mapping of neuronal activity. Here, we use this method to compare the neuronal populations activated by two separate experiences in CA1 and CA3 and evaluate the accuracy of information processing during chronic neuroinflammation. Our results show that the CA3 pyramidal neuron activity is not stable between two exposures to the same environment context or two different contexts. CA1 networks, however, do not differ from control conditions. These data suggest that during chronic neuroinflammation, the CA3 networks show a disrupted ability to encode spatial information, and that CA1 neurons can work independently of CA3. Importantly, memantine treatment is able to partially normalize information processing in the hippocampus, suggesting that when given early during the development of the pathology memantine confers neuronal and cognitive protection while indirectly prevents pathological microglial activation.
机译:了解海马在神经病理情况下如何处理情景记忆信息对于治疗和预防应用很重要。先前的数据表明,在慢性神经发炎过程中,可塑性相关的行为诱导的立即早期基因Arc的表达在CA3和齿状回中发生了改变。这两个海马区均显示活化的小胶质细胞明显增加。低剂量的美金刚胺是一种低至中等亲和力的开放通道非竞争性N-甲基-d-天冬氨酸受体拮抗剂,可减轻神经炎症,使Arc表达恢复至控制水平并减轻由脂多糖诱导的认知功能障碍。在这里,我们调查了神经炎症是否会影响CA3和CA1海马区信息处理的准确性,以及是否通过美金刚治疗对其进行了修饰。使用基于早期基因的早期脑成像方法,即通过荧光原位杂交对时间活动进行细胞分析,可以检测基因组等位基因上的初级转录本。这提供了卓越的时间和细胞分辨率,并促进了神经元活动的定位。在这里,我们使用这种方法来比较在CA1和CA3中两次单独经历激活的神经元群体,并评估慢性神经炎症期间信息处理的准确性。我们的结果表明,在两次暴露于相同环境或两次不同环境之间,CA3锥体神经元活性不稳定。但是,CA1网络与控制条件没有区别。这些数据表明,在慢性神经发炎期间,CA3网络显示出破坏空间信息编码的能力,并且CA1神经元可以独立于CA3起作用。重要的是,美金刚治疗能够使海马中的信息处理部分正常化,这表明在病理发展过程中尽早给予美金刚治疗可赋予神经元和认知保护作用,而间接防止病理性小胶质细胞活化。

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