Ruthenium Single-Atom Nanozyme Driven Sonosensitizer with Oxygen Vacancies Enhances Electron-Hole Separation Efficacy and Remodels Tumor Microenvironment for Sonodynamic-Amplified Ferroptosis
具有氧空位的钌单原子纳米酶驱动的声敏剂增强电子-空穴分离效率并重塑肿瘤微环境,从而促进声动力增强的铁死亡
期刊:Advanced Science
影响因子:14.1
doi:10.1002/advs.202416997
Zhu, Yang; Wang, Dengliang; Du, Chengzhong; Wu, Tiantian; Wei, Penghui; Zheng, Hongjia; Li, Guanting; Zheng, ShunZhe; Su, Lichao; Yan, Lingjun; Hu, Yongrui; Wang, Huimin; Lin, Lisen; Ding, Chenyu; Chen, Xiaoyuan