磷光
催化作用
过氧化物酶
化学
酶
组合化学
生物物理学
活性氧
纳米技术
NADPH氧化酶
荧光
材料科学
生物化学
生物
量子力学
物理
作者
Mingyue Cui,Lulu Qian,Menglin Wu,Peiling Dai,Xueke Pang,Wenxin Xu,Zhixia Feng,Qiang Zhao,Houyu Wang,Bin Song,Yao He
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-10-23
卷期号:17 (21): 21262-21273
被引量:2
标识
DOI:10.1021/acsnano.3c05552
摘要
Enzyme mimics (EMs) with intrinsic catalysis activity have attracted enormous interest in biomedicine. However, there is a lack of environmentally adaptive EMs for sensitive diagnosis and specific catalytic therapeutics in simultaneous manners. Herein, the coordination modulation strategy is designed to synthesize silicon-based phosphorescence enzyme-mimics (SiPEMs). Specifically, the atomic-level engineered Co–N4 structure in SiPEMs enables the environment-adaptive peroxidase, oxidase, and catalase-like activities. More intriguingly, the internal Si–O networks are able to stabilize the triplet state, exhibiting long-lived phosphorescence with lifetime of 124.5 ms, suitable for millisecond-range time-resolved imaging of tumor cells and tissue in mice (with high signal-to-background ratio values of ∼60.2 for in vitro and ∼611 for in vivo). Meanwhile, the SiPEMs act as an oxidative stress amplifier, allowing the production of ·OH via cascade reactions triggered by the tumor microenvironment (∼136-fold enhancement in peroxidase catalytic efficiency); while the enzyme-mimics can scavenge the accumulation of reactive oxygen species to alleviate the oxidative damage in normal cells, they are therefore suitable for environment-adaptive catalytic treatment of cancer in specific manners. We innovate a systematic strategy to develop high-performance enzymemics, constructing a promising breakthrough for replacing traditional enzymes in cancer treatment applications.
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