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年龄相关的血脑屏障的 mRNA 和 miRNA 表达变化。

Age-Associated mRNA and miRNA Expression Changes in the Blood-Brain Barrier.

机构信息

Sheffield Institute for Translational Neuroscience, 385a Glossop Road, University of Sheffield, Sheffield S10 2HQ, UK.

School of Life Science, Health and Chemical Sciences, Faculty of Science, Technology Engineering and Mathematics, The Open University, Walton Hall, Milton Keynes MK7 6AA, UK.

出版信息

Int J Mol Sci. 2019 Jun 25;20(12):3097. doi: 10.3390/ijms20123097.

Abstract

Functional and structural age-associated changes in the blood-brain barrier (BBB) may affect the neurovascular unit and contribute to the onset and progression of age-associated neurodegenerative pathologies, including Alzheimer's disease. The current study interrogated the RNA profile of the BBB in an ageing human autopsy brain cohort and an ageing mouse model using combined laser capture microdissection and expression profiling. Only 12 overlapping genes were altered in the same direction in the BBB of both ageing human and mouse cohorts. These included genes with roles in regulating vascular tone, tight junction protein expression and cell adhesion, all processes prone to dysregulation with advancing age. Integrated mRNA and miRNA network and pathway enrichment analysis of the datasets identified 15 overlapping miRNAs that showed altered expression. In addition to targeting genes related to DNA binding and/or autophagy, many of the miRNAs identified play a role in age-relevant processes, including BBB dysfunction and regulating the neuroinflammatory response. Future studies have the potential to develop targeted therapeutic approaches against these candidates to prevent vascular dysfunction in the ageing brain.

摘要

血脑屏障(BBB)的功能和结构与年龄相关的变化可能会影响神经血管单元,并导致与年龄相关的神经退行性病变的发生和发展,包括阿尔茨海默病。本研究使用联合激光捕获显微切割和表达谱分析,检测了衰老人类尸检脑队列和衰老小鼠模型中 BBB 的 RNA 图谱。在衰老的人类和小鼠队列的 BBB 中,只有 12 个重叠基因以相同的方向发生改变。这些基因包括调节血管张力、紧密连接蛋白表达和细胞黏附的作用基因,所有这些过程在年龄增长时都容易失调。对数据集的 mRNA 和 miRNA 网络和途径富集分析表明,有 15 个重叠的 miRNA 表达发生改变。除了靶向与 DNA 结合和/或自噬相关的基因外,许多鉴定出的 miRNA 在外胚层发育过程中发挥作用,包括 BBB 功能障碍和调节神经炎症反应。未来的研究有可能针对这些候选物开发靶向治疗方法,以防止衰老大脑中的血管功能障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8a7/6627814/04fc6e7e300c/ijms-20-03097-g001.jpg

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