Cellular Microenvironment Triggered Ferroptosis and Photodynamic Therapy for Selective Senescent Cell Clearance
Hang Wang, Yuli Kang, Qiqiang Zhang, Xuelian Wang, Yongqiang Li, Liangfeng Chen, Siwei Yang, Jia Qi, Hui Dong, Guqiao Ding
Journal:ACS Applied Materials & Interfaces
IF:7.8
DOI:10.1021/acsami.6c03395
PMID:41979153
Published:2026-04-14
research field:氧化还原生物学生物医学工程癌症治疗纳米医学老年学
Abstract
Biomedical strategies based on the cellular microenvironment often lead to significant improvements in diagnosis and therapy. In this study, based on the elevated reactive oxygen species (ROS) microenvironment of senescent cells, we designed Fe3+ coordinated nitrogen doped graphene quantum dots (Fe@N-GQDs) with both photodynamic and ferroptotic activity. The results demonstrated that Fe3+ modulated the electronic structure of nitrogen doped graphene quantum dots (N-GQDs) and enhanced their photodynamic activity. Meanwhile, the high ROS levels in endoplasmic reticulum and mitochondria enabled accumulated Fe@N-GQDs to synergistically amplify oxidative stress through the Fe3+/Fe2+ redox cycle and activate the ferroptosis related process. Under the synergistic photodynamic and ferroptosis effects, the clearance efficiency of senescent cells reached 98%. More importantly, leveraging the senescent cell microenvironment, Fe@N-GQDs showed minimal impact on healthy cells without targeting modifications, significantly improving therapeutic safety.
本文使用的Yeasen产品


