Age-related synaptic signatures of brain and cognitive reserve in the rat hippocampus and parahippocampal regions

IF 3.5 3区 医学 Q2 GERIATRICS & GERONTOLOGY Neurobiology of Aging Pub Date : 2025-04-01 Epub Date: 2025-02-07 DOI:10.1016/j.neurobiolaging.2025.01.010
David J. Horovitz , Laura A. Askins , Grace M. Regnier, Joseph A. McQuail
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Abstract

Age-related cognitive decline varies widely among individuals, with some showing resilience despite older age. This study examines synaptic markers of glutamatergic and GABAergic neurotransmission in the hippocampus and cortex of older rats with differing cognitive abilities, aiming to uncover mechanisms that contribute to cognitive resilience. We observed significant age-related reductions in vesicular glutamate transporter VGluT1, particularly in the stratum oriens (SO), radiatum (SR), and lacunosum-moleculare (SLM) of the dorsal CA3 and SLM of the dorsal CA1. Furthermore, loss of VGluT1 in the dorsal CA3-SLM correlated with severity of memory impairment. Higher levels of the vesicular GABA transporter (VGAT) were associated with better spatial learning in older rats, across several synaptic zones of the dorsal hippocampus, including the outer molecular layer of the dentate gyrus (DG), and the SO, SR, SLM, and pyramidal cell layers of both CA3 and CA1. This suggests that enhanced inhibitory neurotransmission specific to the dorsal aspect of the hippocampus may protect against age-related cognitive decline. While the dorsal hippocampus showed consistent age- and memory-related changes, markers in the ventral hippocampus remained largely intact. In the perirhinal cortex, VGluT1 declined with no changes in VGAT, while both markers remained unchanged in other cortical regions, including the lateral entorhinal, retrosplenial, and posterior parietal cortices. These findings highlight region-specific patterns of synaptic aging as potential markers of brain and cognitive reserve.
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大鼠海马和海马旁区与年龄相关的脑突触特征和认知储备
与年龄相关的认知能力下降因人而异,有些人尽管年龄较大,但仍表现出适应力。本研究研究了具有不同认知能力的老年大鼠海马和皮层中谷氨酸能和氨基丁酸能神经传递的突触标记物,旨在揭示认知弹性的机制。我们观察到泡状谷氨酸转运蛋白VGluT1的显著年龄相关性降低,特别是CA3背侧的定向层(SO)、辐射层(SR)和空隙分子(SLM)和CA1背侧的SLM。此外,CA3-SLM背侧VGluT1的缺失与记忆障碍的严重程度相关。高水平的水泡状GABA转运体(VGAT)与老年大鼠更好的空间学习有关,在海马背侧的几个突触区,包括齿状回(DG)的外分子层,以及CA3和CA1的SO、SR、SLM和锥体细胞层。这表明,海马背侧特异性的抑制性神经传递增强可以防止与年龄相关的认知衰退。虽然背侧海马显示出与年龄和记忆相关的变化,但腹侧海马的标志物基本保持完整。在嗅周皮层,VGluT1下降,而VGAT没有变化,而在其他皮层区域,包括外侧嗅内皮层、脾后皮层和后顶叶皮层,这两个标记物保持不变。这些发现强调了突触老化的区域特异性模式作为大脑和认知储备的潜在标记。
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来源期刊
Neurobiology of Aging
Neurobiology of Aging 医学-老年医学
CiteScore
8.40
自引率
2.40%
发文量
225
审稿时长
67 days
期刊介绍: Neurobiology of Aging publishes the results of studies in behavior, biochemistry, cell biology, endocrinology, molecular biology, morphology, neurology, neuropathology, pharmacology, physiology and protein chemistry in which the primary emphasis involves mechanisms of nervous system changes with age or diseases associated with age. Reviews and primary research articles are included, occasionally accompanied by open peer commentary. Letters to the Editor and brief communications are also acceptable. Brief reports of highly time-sensitive material are usually treated as rapid communications in which case editorial review is completed within six weeks and publication scheduled for the next available issue.
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