氧化应激
鼻腔给药
化学
活性氧
线粒体
疾病
抗氧化剂
氧化磷酸化
纳米颗粒
药理学
细胞生物学
功能(生物学)
癌症研究
细胞凋亡
氧化损伤
药物输送
作者
Keyang Xu,Dandan Kou,Xiao Xiao,Bingbing Bai,Caide Liu,Mengyao Wu,Yadan Shi,Mengdan Xu,Xiaoyi Cao,Haodi Qi,Shuhua Wu,Jianfeng Zeng,Mingyuan Gao
摘要
ABSTRACT Ferroptosis contributes to Parkinson's disease (PD) through interconnected processes including iron dysregulation, oxidative stress, and mitochondrial dysfunction, yet current therapies targeting single pathways remain insufficient. Herein, we developed gallium–quercetin nanoparticles (GQNPs) as an intranasally deliverable nanoplatform for multi‐target ferroptosis inhibition. In vitro, GQNPs suppressed ferroptosis by coordinating iron regulation and antioxidation. Ga 3 + interfered with transferrin‐mediated iron uptake to restrict iron influx, while quercetin reduced oxidative stress and supported iron homeostasis, thereby decreasing ROS accumulation and improving mitochondrial function. In vivo, intranasal delivery of GQNPs effectively bypassed the blood‐brain barrier to recover motor coordination and cognitive function in PD mice. By integrating iron regulation, antioxidant activity, and mitochondrial protection within a single nanoplatform, this work highlights gallium‐based coordination nanoparticles as a promising therapeutic strategy for ferroptosis‐associated neurodegenerative diseases.
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