平衡
糖酵解
化学
活性氧
细胞生物学
谷胱甘肽
能量稳态
新陈代谢
氧化磷酸化
线粒体
生物化学
葡萄糖稳态
生物物理学
癌症研究
功能(生物学)
代谢组学
代谢途径
氧化还原
螯合作用
药理学
作者
Qing Liu,Fuhao Jia,Bicheng Han,Runjie Miao,Hangrong Chen
出处
期刊:Small
[Wiley]
日期:2026-04-07
卷期号:: e14891-e14891
标识
DOI:10.1002/smll.202514891
摘要
The cuproptosis efficacy is severely hampered by robust Cu homeostasis in tumors, including glutathione (GSH)-mediated chelation and ATP7B-mediated efflux. Besides, the interconnection among Cu ion, redox, and energy metabolism homeostasis also increases the therapy resistance. Herein, a novel strategy to disrupt this mutual maintenance of triple homeostasis using Cu-based nanoparticles (Cu-LND-FeE) was developed, which was loaded with glycolysis inhibitor lonidamine (LND) and modified by Fe-polyphenol. Specifically, Fe ions were first released to generate reactive oxygen species (ROS), disrupting redox homeostasis and triggering ferroptosis. Meanwhile, GSH was consumed by ROS to block Cu ion chelation. Moreover, LND suppressed ATP production, weakening ATP7B function to block Cu ion efflux. These effects collectively disrupted Cu ion homeostasis and ultimately reinforced cuproptosis. More importantly, the inhibition of glycolysis together with mitochondrial damage inflicted by ferroptosis and cuproptosis synergistically disrupted energy metabolism homeostasis, creating a self-amplifying therapeutic cycle. Briefly, besides sensitizing cuproptosis, the developed triple homeostasis disruption strategy in this study exhibits great promising potential in highly efficient tumor therapy.
科研通智能强力驱动
Strongly Powered by AbleSci AI