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随着年龄的增长,海马体中 MHC II 途径成分和神经胶质激活的同时诱导与认知障碍无关。

Concurrent hippocampal induction of MHC II pathway components and glial activation with advanced aging is not correlated with cognitive impairment.

机构信息

Department of Pharmacology, Pennsylvania State University College of Medicine, 500 University Drive, Hershey, Pennsylvania 17057, USA.

出版信息

J Neuroinflammation. 2011 Oct 11;8:138. doi: 10.1186/1742-2094-8-138.

Abstract

BACKGROUND

Age-related cognitive dysfunction, including impairment of hippocampus-dependent spatial learning and memory, affects approximately half of the aged population. Induction of a variety of neuroinflammatory measures has been reported with brain aging but the relationship between neuroinflammation and cognitive decline with non-neurodegenerative, normative aging remains largely unexplored. This study sought to comprehensively investigate expression of the MHC II immune response pathway and glial activation in the hippocampus in the context of both aging and age-related cognitive decline.

METHODS

Three independent cohorts of adult (12-13 months) and aged (26-28 months) F344xBN rats were behaviorally characterized by Morris water maze testing. Expression of MHC II pathway-associated genes identified by transcriptomic analysis as upregulated with advanced aging was quantified by qPCR in synaptosomal fractions derived from whole hippocampus and in hippocampal subregion dissections (CA1, CA3, and DG). Activation of astrocytes and microglia was assessed by GFAP and Iba1 protein expression, and by immunohistochemical visualization of GFAP and both CD74 (Ox6) and Iba1.

RESULTS

We report a marked age-related induction of neuroinflammatory signaling transcripts (i.e., MHC II components, toll-like receptors, complement, and downstream signaling factors) throughout the hippocampus in all aged rats regardless of cognitive status. Astrocyte and microglial activation was evident in CA1, CA3 and DG of intact and impaired aged rat groups, in the absence of differences in total numbers of GFAP+ astrocytes or Iba1+ microglia. Both mild and moderate microglial activation was significantly increased in all three hippocampal subregions in aged cognitively intact and cognitively impaired rats compared to adults. Neither induction of MHCII pathway gene expression nor glial activation correlated to cognitive performance.

CONCLUSIONS

These data demonstrate a novel, coordinated age-related induction of the MHC II immune response pathway and glial activation in the hippocampus, indicating an allostatic shift toward a para-inflammatory phenotype with advancing age. Our findings demonstrate that age-related induction of these aspects of hippocampal neuroinflammation, while a potential contributing factor, is not sufficient by itself to elicit impairment of spatial learning and memory in models of normative aging. Future efforts are needed to understand how neuroinflammation may act synergistically with cognitive-decline specific alterations to cause cognitive impairment.

摘要

背景

与年龄相关的认知功能障碍,包括海马依赖的空间学习和记忆受损,影响了大约一半的老年人群。随着大脑老化,已经报道了多种神经炎症措施的诱导,但神经炎症与非神经退行性、正常衰老相关的认知衰退之间的关系在很大程度上仍未得到探索。本研究旨在全面研究 MHC II 免疫反应途径和海马中神经胶质激活的表达,同时考虑到衰老和与年龄相关的认知衰退。

方法

通过 Morris 水迷宫测试对三个独立的成年(12-13 个月)和老年(26-28 个月)F344xBN 大鼠队列进行行为特征描述。通过 qPCR 定量测定转录组分析确定的与高级衰老相关的 MHC II 途径相关基因的表达,这些基因在来自整个海马的突触体部分和海马亚区剖分(CA1、CA3 和 DG)中进行了测定。通过 GFAP 和 Iba1 蛋白表达以及 GFAP 和 CD74(Ox6)和 Iba1 的免疫组织化学可视化来评估星形胶质细胞和小胶质细胞的激活。

结果

我们报告了在所有老年大鼠的整个海马中,与认知状态无关,存在明显的与年龄相关的神经炎症信号转导转录本(即 MHC II 成分、 Toll 样受体、补体和下游信号转导因子)的诱导。在完整和受损的老年大鼠组的 CA1、CA3 和 DG 中,星形胶质细胞和小胶质细胞的激活是明显的,而 GFAP+星形胶质细胞或 Iba1+小胶质细胞的总数没有差异。与成年大鼠相比,在所有三个海马亚区中,轻度和中度的小胶质细胞激活在认知正常和认知受损的老年大鼠中均显著增加。MHC II 途径基因表达的诱导或神经胶质激活均与认知表现无关。

结论

这些数据表明,在海马中存在一种新的、协调的与年龄相关的 MHC II 免疫反应途径和神经胶质激活,表明随着年龄的增长,向一种潜在的炎症表型发生了适应性变化。我们的发现表明,在正常衰老的模型中,海马神经炎症的这些方面的年龄相关性诱导虽然是一个潜在的促成因素,但本身不足以引起空间学习和记忆的损伤。需要进一步努力了解神经炎症如何与认知衰退特异性改变协同作用,导致认知障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/138e/3216278/6d05e47cb686/1742-2094-8-138-1.jpg

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