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Combined Administration of Levetiracetam and Valproic Acid Attenuates Age Related Hyperactivity of CA3 Place Cells Reduces Place Field Area and Increases Spatial Information Content in Aged Rat Hippocampus

机译:左乙拉西坦和丙戊酸的联合给药可减轻老年大鼠海马CA3位置细胞与年龄相关的过度活跃减少位置场面积并增加空间信息含量

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摘要

Learning and memory deficits associated with age-related mild cognitive impairment have long been attributed to impaired processing within the hippocampus. Hyperactivity within the hippocampal CA3 region that is associated with aging is mediated in part by a loss of inhibitory interneurons and thought to underlie impaired performance in spatial memory tasks, including the abnormal tendency in aged animals to pattern complete spatial representations. Here, we asked whether the spatial firing patterns of simultaneously recorded CA3 and CA1 neurons in young and aged rats could be manipulated pharmacologically to selectively reduce CA3 hyperactivity and thus, according to hypothesis, the associated abnormality in spatial representations. We used chronically implanted high-density tetrodes to record the spatial firing properties of CA3 and CA1 units during animal exploration for food in familiar and novel environments. Aged CA3 place cells have higher firing rates, larger place fields, less spatial information content, and respond less to a change from a familiar to a novel environment than young CA3 cells. We also find that the combination of levetiracetam (LEV) + valproic acid (VPA), previously shown to act as a cognitive enhancer in tests of spatial memory, attenuate CA3 place cell firing rates, reduce place field area, and increase spatial information content in aged but not young adult rats. This is consistent with drug enhancing the specificity of neuronal firing with respect to spatial location. Contrary to expectation, however, LEV + VPA reduces place cell discrimination between novel and familiar environments, i.e., spatial correlations increase, independent of age even though drug enhances performance in cognitive tasks. The results demonstrate that spatial information content, or the number of bits of information encoded per action potential, may be the key correlate for enhancement of spatial memory by LEV + VPA.
机译:长期以来,与年龄相关的轻度认知障碍相关的学习和记忆缺陷一直归因于海马内的加工能力受损。与衰老相关的海马CA3区域内的过度活动部分是由抑制性中间神经元的丧失所介导的,并被认为是空间记忆任务功能受损的基础,包括老年动物形成完整空间表征的异常趋势。在这里,我们问是否可以通过药理学的方法来操纵幼年和老年大鼠中同时记录的CA3和CA1神经元的空间放电模式,以选择性地减少CA3亢进,从而根据假设确定相关的空间表达异常。在熟悉和新颖的环境中对食物进行动物探索期间,我们使用了长期植入的高密度四极体来记录CA3和CA1单位的空间发射特性。与年轻的CA3细胞相比,老化的CA3位置细胞具有更高的发射率,更大的放置场,更少的空间信息内容,并且对从熟悉的环境到新颖的环境的变化反应较小。我们还发现左乙拉西坦(LEV)+丙戊酸(VPA)的组合,先前在空间记忆测试中表现为认知增强剂,减弱了CA3位置细胞的放电速率,减少了位置场面积,并增加了空间信息含量。老年但不是成年鼠。这与在空间位置方面增强神经元放电特异性的药物相一致。然而,与预期相反,LEV + VPA减少了新的和熟悉的环境之间的位置细胞区分,即,空间相关性增加,与年龄无关,即使药物增强了认知任务的表现。结果表明,空间信息内容或每个动作电位编码的信息位数可能是通过LEV + VPA增强空间记忆的关键因素。

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