神经炎症
纳米医学
小胶质细胞
体内
药理学
医学
活性氧
体外
发病机制
纳米毒理学
化学
肌成纤维细胞
香菇多糖
转录组
作用机理
疾病
蛋白质组学
吞噬作用
氧化应激
细胞生物学
蛋白酶
癌症研究
免疫学
神经科学
炎症
机制(生物学)
免疫系统
作者
Ruixue Wei,Xu Zhang,Jiangkuan Zhang,Zhaohui Chang,Ke Wang,Junyang Chen,Qi Feng,Nan Li
出处
期刊:Small
[Wiley]
日期:2026-04-22
卷期号:: e09328-e09328
标识
DOI:10.1002/smll.202509328
摘要
ABSTRACT Neuroinflammation plays an irreplaceable part in the pathogenesis and progression of Parkinson's disease (PD). While anti‐inflammatory nanomedicine offers new hope for PD treatment, the nano‐biological effects that govern their therapeutic outcomes remain largely unexplored. Herein, after investigating the mechanism of action of lentinan (LNT) on PD by network pharmacology, we report LNT and Mn 3 O 4 integrated nanosystems (Mn 3 O 4 @LNT) as anti‐neuroinflammatory agents for PD treatment. Proteomics analyses found that there are significant differences in protein corona composition between Mn 3 O 4 and Mn 3 O 4 @LNT, and the protein coronas in Mn 3 O 4 @LNT are beneficial for BBB traversing and brian accumulation. In vivo and in vitro studies have shown that Mn 3 O 4 @LNT effectively alleviates the behavioral and pathological symptoms of PD by eliminating reactive oxygen species and reducing neuroinflammation. Transcriptomics further revealed the vital part of the phenotypic transformation of microglia and inflammatory response in the action of Mn 3 O 4 @LNT on the PD model. In summary, our study highlights the clinical application prospects of Mn 3 O 4 @LNT by benefiting the BBB traversing and promoting neuroinflammation mitigation in PD models.
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