神经炎症
认知障碍
脂多糖
化学
吴茱萸碱
神经科学
认知
医学
炎症
药理学
心理学
内分泌学
内科学
作者
Chunqi Yang,Xiangjun Wu,Ziyu Jiang,Yi Ru,Baoying Shen,Fangyang Li,Jialu Cui,Chi Zhang,Xiaoqiang Wang,Wenlong Yu,Yina Li,Ying Huang,Alice P.S. Kong,Feiran Hao,Chengrong Xiao,Yuguang Wang,Yue Gao
标识
DOI:10.1016/j.ijbiomac.2025.139597
摘要
Neuroinflammation is a key driver of neurological disorders. Evodiamine (EVO), an alkaloid from the traditional Chinese herb Evodia rutaecarpa, possesses potent biological activities, notably anticancer and anti-inflammatory effects. This study investigates EVO's potential to attenuate LPS-induced neuroinflammation, focusing on identifying its therapeutic targets and mechanisms of action. EVO treatment significantly improved mitochondrial function and reduced oxidative stress in LPS-stimulated BV2 cells, while also lowering levels of pro-inflammatory factors (IL-6, NO, IL-1β) in brain organoids. In mice, EVO treatment alleviated behavioral abnormalities, especially in cognition and memory, and lowered hippocampal inflammation marker levels. To elucidate the critical mechanisms by which EVO exerts its anti-inflammatory effects, we analyzed LPS-induced inflammatory injury in BV2 cells and used transcriptomics to investigate whether EVO modulates the C/EBP-β signaling pathway. Further validation using si-C/EBP-β confirmed EVO's regulatory effect on the C/EBP-β-COX2 axis, showing that knockdown significantly reduced pro-inflammatory factor expression, thereby providing neuroprotection. Moreover, molecular docking and dynamics simulations confirmed a stable interaction between EVO and C/EBP-β, supporting its role in attenuating LPS-induced neuroinflammation. In summary, these findings suggest that EVO regulates inflammation-related pathways by targeting the C/EBP-β-COX2 axis, offering neuroprotective benefits and mitigating neuroinflammatory responses.
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