光热治疗
葡萄糖氧化酶
化学
催化作用
锡
表面等离子共振
纳米颗粒
聚乙二醇化
辐照
纳米技术
材料科学
光化学
生物物理学
酶
生物化学
有机化学
核物理学
聚乙二醇
物理
生物
作者
Jiaming Liu,Aizhu Wang,Shihui Liu,Ruiqi Yang,Longwei Wang,Fene Gao,Huige Zhou,Xin Yu,Jing Liu,Chunying Chen
标识
DOI:10.1002/anie.202106750
摘要
Nanozyme-based catalytic tumor therapy is an emerging therapeutic method with high reactivity in response to tumor microenvironments (TMEs). To overcome the current limitations of deficient catalytic activity of nanozymes, we studied the contributing factors of enzymatic activity based on non-metallic-atom doping and irradiation. Nitrogen doping significantly enhanced the peroxidase activity of Ti-based nanozymes, which was shown experimentally and theoretically. Based on the excellent NIR-adsorption-induced surface plasmon resonance and photothermal effect, the enzymatic activity of TiN nanoparticles (NPs) was further improved under NIR laser irradiation. Hence, an acidic TME-responsive and irradiation-mediated cascade nanocatalyst (TLGp) is presented by using TiN-NP-encapsulated liposomes linked with pH-responsive PEG-modified glucose oxidase (GOx). The integration of pH-responsive GOx-mediated H2 O2 self-supply, nitrogen-doping, and irradiation-enhanced enzymatic activity of TiN NPs and mild-photothermal therapy enables an effective tumor inhibition by TLGp with minimal side effects in vivo.
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