神经退行性变
神经保护
海马结构
自噬
认知功能衰退
神经科学
β淀粉样蛋白
蛋白质稳态
海马体
巴恩斯迷宫
痴呆
生物
疾病
药理学
医学
内科学
细胞凋亡
生物化学
空间学习
作者
Josué Ballesteros‐Álvarez,Wynnie Nguyen,Renuka Sivapatham,Anand Rane,Julie K. Andersen
出处
期刊:GeroScience
[Springer International Publishing]
日期:2022-12-28
卷期号:45 (2): 1095-1113
被引量:50
标识
DOI:10.1007/s11357-022-00708-y
摘要
In the present study, we investigated the effects of urolithin A (UA), a metabolite generated from ellagic acid via its metabolism by gut bacteria, as an autophagy activator with potential neuroprotective activity. WT and 3xTg-AD mice were administered long-term intermittent dietary supplementation with UA. UA was found to prevent deficits in spatial memory, cued fear response, and exploratory behavior in this model. It also decreased the Aβ plaque burden in areas of the hippocampus where these protein deposits are prominent in the model. Interestingly, correlation analyses demonstrate that Aβ plaque burden positively correlates with enhanced spatial memory in 3xTg-AD mice on a control diet but not in those supplemented with UA. In contrast, Aβ42 abundance in cortical and hippocampal homogenates negatively correlate with spatial memory in UA-fed mice. Our data suggest that plaque formation may be a protective mechanism against neurodegeneration and cognitive decline and that targeting the generation of proteotoxic Aβ species might be a more successful approach in halting disease progression. UA was also found to extend lifespan in normal aging mice. Mechanistically, we demonstrate that UA is able to induce autophagy and to increase Aβ clearance in neuronal cell lines. In summary, our studies reveal UA, likely via its actions as a autophagy inducer, is capable of removing Aβ from neurons and its dietary administration prevents the onset of cognitive deficits associated with pathological Aβ deposition in the 3xTg-AD mouse model as well as extending lifespan in normal aging mice.
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