Tumor Microenvironment Responsive Hollow Nanoplatform for Triple Amplification of Oxidative Stress to Enhance Cuproptosis-Based Synergistic Cancer Therapy

被引:72
作者
Xu, Weijun [1 ]
Wang, Yaping [1 ]
Hou, Guanghui [1 ]
Wang, Jinlei [1 ]
Wang, Taibing [1 ]
Qian, Junmin [1 ]
Suo, Aili [2 ]
机构
[1] Xi An Jiao Tong Univ, State Key Lab Mech Behav Mat, Xian 710049, Peoples R China
[2] First Affiliated Hosp Xian Jiaotong Univ, Dept Oncol, Xian 710061, Peoples R China
基金
中国国家自然科学基金; 中国博士后科学基金;
关键词
artemisinin; cuproptosis; disulfiram; oxidative stress; tumor therapy; METAL-ORGANIC FRAMEWORKS; CELL-DEATH;
D O I
10.1002/adhm.202202949
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Cuproptosis is a recently discovered form of programmed cell death and shows great potential in cancer treatment. Herein, a copper-dithiocarbamate chelate-doped and artemisinin-loaded hollow nanoplatform (HNP) is developed via a chelation competition-induced hollowing strategy for cuproptosis-based combination therapy. The HNP exhibits tumor microenvironment-triggered catalytic activity, wherein liberated Cu2+ catalyzes artemisinin and endogenous H2O2 to produce C-centered radicals and hydroxyl radicals, respectively. Meanwhile, the disulfide bonds-rich HNP can deplete intracellular glutathione, thus triply amplifying tumor oxidative stress. The augmented oxidative stress sensitizes cancer cells to the cuproptosis, causing prominent dihydrolipoamide S-acetyltransferase oligomerization and mitochondrial dysfunction. Moreover, the HNP can activate ferroptosis via inhibiting GPX4 activity and trigger apoptosis via dithiocarbamate-copper chelate-mediated ubiquitinated proteins accumulation, resulting in potent antitumor efficacy. Such a cuproptosis/ferroptosis/apoptosis synergetic strategy opens a new avenue for cancer therapy.
引用
收藏
页数:12
相关论文
共 34 条
[1]   Hollow Functional Materials Derived from Metal-Organic Frameworks: Synthetic Strategies, Conversion Mechanisms, and Electrochemical Applications [J].
Cai, Ze-Xing ;
Wang, Zhong-Li ;
Kim, Jeonghun ;
Yamauchi, Yusuke .
ADVANCED MATERIALS, 2019, 31 (11)
[2]   Self-Adaptive Single-Atom Catalyst Boosting Selective Ferroptosis in Tumor Cells [J].
Cao, Fangfang ;
Sang, Yanjuan ;
Liu, Chaoying ;
Bai, Fuquan ;
Zheng, Lirong ;
Ren, Jinsong ;
Qu, Xiaogang .
ACS NANO, 2022, 16 (01) :855-868
[3]   Single-Atom Pd Nanozyme for Ferroptosis-Boosted Mild-Temperature Photothermal Therapy [J].
Chang, Mengyu ;
Hou, Zhiyao ;
Wang, Man ;
Yang, Chunzheng ;
Wang, Ruifeng ;
Li, Fang ;
Liu, Donglian ;
Peng, Tieli ;
Li, Chunxia ;
Lin, Jun .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2021, 60 (23) :12971-12979
[4]   Reactive oxygen species-activated self-amplifying prodrug nanoagent for tumor-specific Cu-chelate chemotherapy and cascaded photodynamic therapy [J].
Chen, Jie ;
Tan, Xiaomin ;
Huang, Yanjuan ;
Xu, Congjun ;
Zeng, Zishan ;
Shan, Ting ;
Guan, Zilin ;
Xu, Xiaoyu ;
Huang, Zeqian ;
Zhao, Chunshun .
BIOMATERIALS, 2022, 284
[5]   SAR1B senses leucine levels to regulate mTORC1 signalling [J].
Chen, Jie ;
Ou, Yuhui ;
Luo, Rong ;
Wang, Jie ;
Wang, Dong ;
Guan, Jialiang ;
Li, Yi ;
Xia, Peixue ;
Chen, Peng R. ;
Liu, Ying .
NATURE, 2021, 596 (7871) :281-+
[6]   Cuproptosis: Cellular and molecular mechanisms underlying copper-induced cell death [J].
Cobine, Paul A. ;
Brady, Donita C. .
MOLECULAR CELL, 2022, 82 (10) :1786-1787
[7]   Targeted GSH-exhausting and hydroxyl radical self-producing manganese-silica nanomissiles for MRI guided ferroptotic cancer therapy [J].
Fei, Weidong ;
Chen, Danfei ;
Tang, Hongxia ;
Li, Chaoqun ;
Zheng, Weizeng ;
Chen, Fengying ;
Song, Qianqian ;
Zhao, Yunchun ;
Zou, Yu ;
Zheng, Caihong .
NANOSCALE, 2020, 12 (32) :16738-16754
[8]   Ruthenium(II) Complex-Grafted Hollow Hierarchical Metal-Organic Frameworks with Superior Electrochemiluminescence Performance for Sensitive Assay of Thrombin [J].
Huang, Wei ;
Hu, Gui-Bing ;
Liang, Wen-Bin ;
Wang, Jun-Mao ;
Lu, Mei-Ling ;
Yuan, Ruo ;
Xiao, Dong-Rong .
ANALYTICAL CHEMISTRY, 2021, 93 (15) :6239-6245
[9]   A Stimuli-Responsive Small-Molecule Metal-Carrying Prochelator: A Novel Prodrug Design Strategy for Metal Complexes [J].
Huang, Zeqian ;
Luo, Yong ;
Zhang, Tao ;
Ding, Yaqing ;
Chen, Meixu ;
Chen, Jie ;
Liu, Qiuxing ;
Huang, Yanjuan ;
Zhao, Chunshun .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2022, 61 (28)
[10]   Copper-induced cell death Excess copper causes mitochondrial protein aggregation and triggers a distinct form of cell death [J].
Kahison, Martha A. ;
Dixon, Scott J. .
SCIENCE, 2022, 375 (6586) :1231-1232