Biodegradable Calcium Phosphate Nanotheranostics with Tumor-Specific Activatable Cascade Catalytic Reactions-Augmented Photodynamic Therapy

被引:171
作者
Fu, Lian-Hua [1 ]
Wan, Yilin [1 ]
Li, Chunying [1 ]
Qi, Chao [1 ]
He, Ting [1 ]
Yang, Chen [1 ]
Zhang, Yifan [1 ]
Lin, Jing [1 ]
Huang, Peng [1 ]
机构
[1] Shenzhen Univ, Hlth Sci Ctr, Sch Biomed Engn, Marshall Lab Biomed Engn,Int Canc Ctr,Lab Evoluti, Shenzhen 518060, Peoples R China
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
biomineralization; calcium phosphate nanotheranostics; glucose oxidase; oxygen self-supplying; photodynamic therapy;
D O I
10.1002/adfm.202009848
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Photodynamic therapy (PDT) is exploited as a promising strategy for cancer treatment. However, the hypoxic solid tumor and the lack of tumor-specific photosensitizer administration hinder the further application of oxygen (O-2)-dependent PDT. In this study, a biodegradable and O-2 self-supplying nanoplatform for tumor microenvironment (TME)-specific activatable cascade catalytic reactions-augmented PDT is reported. The nanoplatform (named GMCD) is constructed by coloading catalase (CAT) and sinoporphyrin sodium (DVDMS) in the manganese (Mn)-doped calcium phosphate mineralized glucose oxidase (GOx) nanoparticles. The GMCD can effectively accumulate in tumor sites to achieve an "off to on" fluorescence transduction and a TME-activatable magnetic resonance imaging. After internalization into cancer cells, the endogenous hydrogen peroxide (H2O2) can be catalyzed to generate O-2 by CAT, which not only promotes GOx catalytic reaction to consume more intratumoral glucose, but also alleviates tumor hypoxia and enhances the production of cytotoxic singlet oxygen from light-triggered DVDMS. Moreover, the H2O2 generated by GOx-catalysis can be converted into highly toxic hydroxyl radicals by Mn2+-mediated Fenton-like reaction, further amplifying the oxidative damage of cancer cells. As a result, GMCD displays superior therapeutic effects on 4T1-tumor bearing mice by a long term cascade catalytic reactions augmented PDT.
引用
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页数:11
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