化学
活性氧
双功能
癌症研究
平衡
细胞外
肿瘤微环境
细胞生物学
生物相容性材料
再生(生物学)
钴
生物物理学
炎症
催化作用
肿瘤进展
血管生成
中性粒细胞胞外陷阱
细胞内
信号转导
作者
Shengqi Yin,Junjie Li,Yishu Zou,Yang Liu,Yilin Zheng,Lu Yu,Wanying Zheng,Yajun Zou,Z Zhang,Tao Li,Peiqun Yin,Jianlin Zhang,Yuen Wu,Yi Ding
摘要
Herein, we develop an orally administered cobalt single-atom nanozyme (Co-SAN) featuring pH-responsive, bifunctional catalytic activity to enable simultaneous intestinal radioprotection and tumor radiosensitization. In the alkaline intestinal microenvironment, Co-SAN effectively scavenges radiation-induced reactive oxygen species (ROS)-as validated by flow cytometry, thereby mitigating radiation-induced intestinal injury (RIII). Mechanistically, RNA-seq analysis reveals that beyond direct ROS elimination, Co-SAN downregulates the ROS-mediated PI3K/AKT signaling pathway, significantly suppressing the formation of detrimental neutrophil extracellular traps (NETs). Furthermore, this highly biocompatible nanozyme maintains gut microbiota homeostasis and preserves intestinal barrier integrity. In contrast, within the mildly acidic tumor microenvironment (TME), Co-SAN undergoes a catalytic switch to promote ROS generation and ameliorate hypoxia, potently augmenting radiotherapeutic efficacy. Collectively, this study presents a bifunctional single-atom nanozyme that resolves the spatial contradiction between normal tissue protection and targeted tumor sensitization, offering a promising paradigm to substantially widen the therapeutic window of radiotherapy.
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