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鉴定与衰老大鼠海马中炎症环境加剧相关的保守基因特征。

Identification of a conserved gene signature associated with an exacerbated inflammatory environment in the hippocampus of aging rats.

作者信息

Pardo Joaquín, Abba Martin C, Lacunza Ezequiel, Francelle Laetitia, Morel Gustavo R, Outeiro Tiago F, Goya Rodolfo G

机构信息

INIBIOLP, Histology B-Pathology B, School of Medicine, UNLP, La Plata, Argentina.

CINIBA, School of Medicine, UNLP, La Plata, Argentina.

出版信息

Hippocampus. 2017 Apr;27(4):435-449. doi: 10.1002/hipo.22703. Epub 2017 Jan 23.

Abstract

There have been a few descriptive studies in aged rodents about transcriptome changes in the hippocampus, most of them in males. Here, we assessed the age changes in spatial memory performance and hippocampal morphology in female rats and compared those changes with changes in the hippocampal transcriptome. Old rats displayed significant deficits in spatial memory. In both age groups, hole exploration frequency showed a clear peak at hole 0 (escape hole), but the amplitude of the peak was significantly higher in the young than in the old animals. In the hippocampus, there was a dramatic reduction in neurogenesis, whereas reactive microglial infiltrates revealed an inflammatory hippocampal state in the senile rats. Hippocampal RNA-sequencing showed that 210 genes are differentially expressed in the senile rats, most of them being downregulated. Our RNA-Seq data showed that various genes involved in the immune response, including TYROBP, CD11b, C3, CD18, CD4, and CD74, are overexpressed in the hippocampus of aged female rats. Enrichment analysis showed that the pathways overrepresented in the senile rats matched those of an exacerbated inflammatory environment, reinforcing our morphologic findings. After correlating our results with public data of human and mouse hippocampal gene expression, we found an 11-gene signature of overexpressed genes related to inflammatory processes that was conserved across species. We conclude that age-related hippocampal deficits in female rats share commonalities between human and rodents. Interestingly, the 11-gene signature that we identified may represent a cluster of immune and regulatory genes that are deregulated in the hippocampus and possibly other brain regions during aging as well as in some neurodegenerative diseases and low-grade brain tumors. Our study further supports neuroinflammation as a promising target to treat cognitive dysfunction in old individuals and some brain tumors. © 2017 Wiley Periodicals, Inc.

摘要

关于老年啮齿动物海马体转录组变化已有一些描述性研究,其中大多数研究对象是雄性。在此,我们评估了雌性大鼠空间记忆能力和海马体形态的年龄变化,并将这些变化与海马体转录组的变化进行了比较。老年大鼠在空间记忆方面表现出显著缺陷。在两个年龄组中,洞探索频率在洞0(逃生洞)处均呈现明显峰值,但该峰值的幅度在年轻动物中显著高于老年动物。在海马体中,神经发生显著减少,而反应性小胶质细胞浸润显示老年大鼠海马体处于炎症状态。海马体RNA测序表明,老年大鼠中有210个基因差异表达,其中大多数基因表达下调。我们的RNA测序数据显示,包括TYROBP、CD11b、C3、CD18、CD4和CD74在内的多种参与免疫反应的基因在老年雌性大鼠海马体中过度表达。富集分析表明,老年大鼠中过度表达的通路与炎症环境加剧时的通路相匹配,这强化了我们的形态学研究结果。将我们的结果与人类和小鼠海马体基因表达的公共数据进行关联后,我们发现了一个与炎症过程相关的11个基因的过度表达特征,该特征在不同物种间具有保守性。我们得出结论,雌性大鼠与年龄相关的海马体缺陷在人类和啮齿动物之间具有共性。有趣的是,我们鉴定出的11个基因特征可能代表了一组免疫和调节基因,这些基因在衰老过程中以及在一些神经退行性疾病和低度脑肿瘤中,在海马体以及可能的其他脑区中失调。我们的研究进一步支持神经炎症作为治疗老年人认知功能障碍和一些脑肿瘤的一个有前景的靶点。© 2017威利期刊公司

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