粒体自噬
纳米颗粒
含氟聚合物
线粒体
生物物理学
自噬
荧光
泊洛沙姆
材料科学
氧化应激
聚合物
化学
纳米技术
体内分布
氧化磷酸化
荧光显微镜
细胞器
共轭体系
纳米医学
血液循环
活性氧
荧光寿命成像显微镜
吞噬体
降级(电信)
作者
Mengxiao Liang,Shengzhe Ruan,Quan Wang,Yuxue Cheng,Jiaqi Li,Changping Wang,Yiyun Cheng,Hui Wang
标识
DOI:10.1038/s41467-025-64813-0
摘要
Mitophagy is crucial for the selective autophagic degradation of damaged mitochondria, helping to maintain both mitochondrial and cellular homeostasis. Here, we report a fluoroalkylated polypyridinium that specifically targets mitochondria and exhibits high activity in mitophagy induction. The polymer effectively restores mitochondrial function and alleviates the inflammatory response in foam cells by activating mitophagy, and displays inherent red fluorescence under physiological conditions, allowing for direct tracing of its biodistribution in cells and in vivo. Besides, the polymer nanoparticle shows high serum stability due to the antifouling properties of fluoroalkyl tags. After intravenous administration, the nanoparticle reduces oxidative stress, promotes mitophagy, and decreases cellular senescence in atherosclerotic plaques, contributing to high therapeutic efficacy. This study presents an innovative and effective strategy for the treatment of atherosclerosis and other mitochondrial dysfunction-related inflammatory conditions.
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