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◆ npj Aging2025-12-03· Senescence

27-Hydroxycholesterol triggers microglial senescence subsequent to iron over-loading contributes to brain aging, suppressed by Deferoxamine

Chunyang Yu, Wencheng Wang, Lei Shi, Rui Ma, Yawen Zhang, Chun Zhang, Xuewei Wang, Tianqi Wang, Yan Zheng, Jianying Tian

原始摘要(英文原文)· Original abstract
Brain aging is a major factor in cognitive decline and Alzheimer's disease (AD) progression. Aging-induced microglial senescence critically drives inflammaging and brain aging processes. Nevertheless, the underlying reasons and mechanisms that promote microglial aging remain unclear. This study explores how 27-hydroxycholesterol (27-OHC), a key oxysterol, accelerates brain aging by promoting microglial senescence, iron overload, and neuroinflammation. Clinically, we observed a significant inverse correlation between plasma 27-OHC levels and Mini-Mental State Examination (MMSE) scores in AD patients, accompanied by reduced 24S-OHC concentrations. Experimental studies revealed that 27-OHC administration in mice induced hippocampal-dependent cognitive impairment and anxiety-like behaviors, concurrent with elevated expression of cellular senescence markers (P21, P16, SA-β-Gal) and M1 microglial polarization. In BV-2 cells, 27-OHC disrupted iron homeostasis (DMT1/ferritin/GPX4 dysregulation), elevating ROS and impairing mitochondrial function. Deferoxamine (DFX) mitigated microglial senescence and ferroptosis. These findings establish the 27-OHC-iron axis as a novel therapeutic target for combating cholesterol-driven neurodegeneration.
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27-Hydroxycholesterol triggers microglial senescence subsequent to iron over-loading contributes to brain aging, suppressed by Deferoxamine — 科研速览 Science Skim