Nitrogen vacancy-rich carbon nitride anchored with iron atoms for efficient redox dyshomeostasis under ultrasound actuation

被引:0
|
作者
He, Mengting [1 ]
Wang, Xiaoqin [1 ]
Yu, Honglian [1 ]
Zhao, Yinmin [1 ]
Zhang, Lei [2 ]
Xu, Zhigang [1 ,3 ]
Kang, Yuejun [1 ,3 ]
Xue, Peng [1 ,3 ]
机构
[1] Southwest Univ, Key Lab Luminescence Anal & Mol Sensing, Minist Educ, Sch Mat & Energy, Chongqing 400715, Peoples R China
[2] Southwest Univ, State Key Lab Resource Insects, Chongqing 400715, Peoples R China
[3] Southwest Univ, Yibin Acad, Yibin 644000, Peoples R China
基金
中国国家自然科学基金;
关键词
Reactive oxygen species; Sonodynamic therapy; Nanocatalysts; Apoptosis; Ferroptosis; TUMOR MICROENVIRONMENT; CANCER; NANOPARTICLES; NANOSHEETS; THERAPY;
D O I
10.1016/j.biomaterials.2023.122446
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Traditional Fe-based Fenton reaction for inducing oxidative stress is restricted by random charge transfer without oriental delivery, and the resultant generation of reactive oxygen species (ROS) is always too simplistic to realize a satisfactory therapeutic outcome. Herein, FeNv/CN nanosheets rich in nitrogen vacancies are developed for high-performance redox dyshomeostasis therapy after surface conjugation with polyethylene glycol (PEG) and cyclic Arg-Gly-Asp (cRGD). Surface defects in FeNv/CN serve as electron traps to drive the directional transfer of the excited electrons to Fe atom sites under ultrasound (US) actuation, and the highly elevated electron density promote the catalytic conversion of H2O2 into center dot OH. Meanwhile, energy band edges of FeNv/CN favor the production of 1O2 upon interfacial redox chemistry, which is enhanced by the optimal separation/recombination dynamics of electron/hole pairs. Moreover, intrinsic peroxidase-like activity of FeNv/CN contributes to the depletion of reductant glutathione (GSH). Under the anchoring effect of cRGD, PEGylated FeNv/CN can be efficiently enriched in the tumorous region, which is ultrasonically activated for concurrent ROS accumulation and GSH consumption in cytosolic region. The deleterious redox dyshomeostasis not only eradicates primary tumor but also suppresses distant metastasis via antitumor immunity elicitation. Collectively, this study could inspire more facile designs of chalybeates for medical applications.
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页数:17
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