Self‐Reinforced Bimetallic Mito‐Jammer for Ca2+ Overload‐Mediated Cascade Mitochondrial Damage for Cancer Cuproptosis Sensitization

Author:

Du Chier1,Guo Xun1,Qiu Xiaoling2,Jiang Weixi1,Wang Xiaoting1,An Hongjin1,Wang Jingxue1,Luo Yuanli1,Du Qianying3,Wang Ruoyao4,Cheng Chen1,Guo Yuan1,Teng Hua1,Ran Haitao1,Wang Zhigang1,Li Pan1,Zhou Zhiyi5,Ren Jianli1ORCID

Affiliation:

1. Department of Ultrasound and Chongqing Key Laboratory of Ultrasound Molecular Imaging the Second Affiliated Hospital of Chongqing Medical University Chongqing 400010 P. R. China

2. Department of Intensive Care Unit the Second Affiliated Hospital of Chongqing Medical University Chongqing 400010 P. R. China

3. Department of Radiology Second Affiliated Hospital of Chongqing Medical University Chongqing 400010 P. R. China

4. Department of Breast and Thyroid Surgery Second Affiliated Hospital of Chongqing Medical University Chongqing 400010 P. R. China

5. Department of General Practice Chongqing General Hospital Chongqing 400010 P. R. China

Abstract

AbstractOverproduction of reactive oxygen species (ROS), metal ion accumulation, and tricarboxylic acid cycle collapse are crucial factors in mitochondria‐mediated cell death. However, the highly adaptive nature and damage‐repair capabilities of malignant tumors strongly limit the efficacy of treatments based on a single treatment mode. To address this challenge, a self‐reinforced bimetallic Mito‐Jammer is developed by incorporating doxorubicin (DOX) and calcium peroxide (CaO2) into hyaluronic acid (HA) ‐modified metal‐organic frameworks (MOF). After cellular, Mito‐Jammer dissociates into CaO2 and Cu2+ in the tumor microenvironment. The exposed CaO2 further yields hydrogen peroxide (H2O2) and Ca2+ in a weakly acidic environment to strengthen the Cu2+‐based Fenton‐like reaction. Furthermore, the combination of chemodynamic therapy and Ca2+ overload exacerbates ROS storms and mitochondrial damage, resulting in the downregulation of intracellular adenosine triphosphate (ATP) levels and blocking of Cu‐ATPase to sensitize cuproptosis. This multilevel interaction strategy also activates robust immunogenic cell death and suppresses tumor metastasis simultaneously. This study presents a multivariate model for revolutionizing mitochondria damage, relying on the continuous retention of bimetallic ions to boost cuproptosis/immunotherapy in cancer.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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