Protective effects of apigenin on the brain transcriptome with aging

芹菜素 转录组 衰老 炎症 生物 认知功能衰退 神经炎症 免疫衰老 小胶质细胞 衰老的大脑 细胞生物学 免疫系统 痴呆 神经科学 免疫学 基因表达 医学 生物化学 内科学 基因 类黄酮 认知 疾病 抗氧化剂
作者
Alyssa N. Cavalier,Zachary S. Clayton,Devin Wahl,David A. Hutton,Cali M. McEntee,Douglas R. Seals,Thomas J. LaRocca
出处
期刊:Mechanisms of Ageing and Development [Elsevier]
卷期号:217: 111889-111889 被引量:6
标识
DOI:10.1016/j.mad.2023.111889
摘要

Brain aging is associated with reduced cognitive function that increases the risk for dementia. Apigenin is a bioactive plant compound that inhibits cellular aging processes and could protect against age-related cognitive dysfunction, but its mechanisms of action in the brain have not been comprehensively studied. We characterized brain transcriptome changes in young and old mice treated with apigenin in drinking water. We observed improved learning/memory in old treated mice, and our transcriptome analyses indicated that differentially expressed genes with aging and apigenin were primarily related to immune responses, inflammation, and cytokine regulation. Moreover, we found that genes/transcripts that were increased in old vs. young mice but downregulated with apigenin treatment in old animals were associated with immune activation/inflammation, whereas transcripts that were reduced with aging but increased with apigenin were related neuronal function and signaling. We also found that these transcriptome differences with aging and apigenin treatment were driven in part by glial cells. To follow up on these in vivo transcriptome findings, we studied aged astrocytes in vitro, and we found that apigenin reduced markers of inflammation and cellular senescence in these cells. Collectively, our data suggest that apigenin may protect against age-related cognitive dysfunction by suppressing neuro-inflammatory processes.
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