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High-Entropy Alloy Synergized with Gene Editing for Cocktail-Sensitized Radioimmunotherapy of Lung Metastases

ADVANCED MATERIALS. 2026-03; 
Qianglan Lu, Chengwei Ye, Ruiyue Chen, Zhanqi Xing, Zhiyong Liu, Fei Zeng, Jinglang Gong, Yanfeng Gao, Xiaolian Sun, Shaochun Tang, Yujun Song
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Abstract

Radiotherapy (RT) eliminates cancer cells either through direct DNA damage induced by ionizing radiation or indirectly by generating cytotoxic reactive oxygen species (ROS) via radiolysis. However, high-dose radiation often triggers DNA repair mechanisms, undermining therapeutic efficacy and causing damage to surrounding healthy tissues. Thus, enhancing anti-tumor effects at lower doses while minimizing normal tissue damage and improving safety remains a key challenge in advancing RT technologies. To tackle these issues, we developed an RT-sensitizing platform, referred to as HAEPRC, which integrates a novel high-entropy alloy (HEA) composed of gold (Au), bismuth (Bi), platinum (Pt), silver (Ag), and palladium ... More

Keywords

bioorthogonal catalysis; gene editing; high‐entropy alloy; microfluidic chip; radiation therapy.