吡格列酮
神经科学
树突棘
神经保护
突触
兴奋剂
神经传递
突触可塑性
体内
小胶质细胞
生物
长时程增强
受体
化学
神经退行性变
医学
内大麻素系统
认知功能衰退
突触裂
膜片钳
作者
Juan Zu,Cong Li,Mochen Cui,Xinwu Liu,Zhouyang Pan,Xiaohe Li,Fang Zhang,Johanna Gentz,Gerda Mitteregger-Kretzschmar,Jochen Herms,Yuan Shi
出处
期刊:Brain
[Oxford University Press]
日期:2025-12-12
卷期号:149 (2): 668-679
标识
DOI:10.1093/brain/awaf462
摘要
Synaptic loss is an early hallmark of Alzheimer's disease (AD), predominantly driven by aberrant microglial reactivity. Pioglitazone, a peroxisome proliferator-activated receptor gamma (PPAR-γ) agonist with anti-diabetic properties, has been shown to suppress microglial activity and improve cognitive performance in both AD models and clinical studies. However, whether its neuroprotective effects involve direct modulation of synaptic architecture remains unclear. Here, using longitudinal in vivo two-photon imaging, multi-channel immunohistochemistry, super-resolution confocal microscopy and three-dimensional reconstruction techniques in an AD mouse model, we analyse synaptic and microglial interactions. We show that a 4-week pioglitazone treatment preserves dendritic spine density and enhances spine stability over time. Mechanistically, pioglitazone reduces synaptic C1q deposition, thereby limiting complement-mediated microglial synaptic engulfment and attenuating synapse loss. These findings identify pioglitazone as a modulator of complement-dependent microglial synaptic pruning and support its therapeutic potential in preserving synaptic integrity during early AD pathogenesis.
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