癌细胞
葡萄糖氧化酶
单线态氧
光动力疗法
过氧化氢
癌症研究
化学
癌症
生物化学
生物物理学
生物
氧气
酶
遗传学
有机化学
作者
Shiying Li,Hong Cheng,Bo‐Ru Xie,Wen‐Xiu Qiu,Jing-Yue Zeng,Chu‐Xin Li,Shuangshuang Wan,Lu Zhang,Wen‐Long Liu,Xian‐Zheng Zhang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2017-06-30
卷期号:11 (7): 7006-7018
被引量:717
标识
DOI:10.1021/acsnano.7b02533
摘要
Selectively cuting off the nutrient supply and the metabolism pathways of cancer cells would be a promising approach to improve the efficiency of cancer treatment. Here, a cancer targeted cascade bioreactor (designated as mCGP) was constructed for synergistic starvation and photodynamic therapy (PDT) by embedding glucose oxidase (GOx) and catalase in the cancer cell membrane-camouflaged porphyrin metal-organic framework (MOF) of PCN-224 (PCN stands for porous coordination network). Due to biomimetic surface functionalization, the immune escape and homotypic targeting behaviors of mCGP would dramatically enhance its cancer targeting and retention abilities. Once internalized by cancer cells, mCGP was found to promote microenvironmental oxygenation by catalyzing the endogenous hydrogen peroxide (H2O2) to produce oxygen (O2), which would subsequently accelerate the decomposition of intracellular glucose and enhance the production of cytotoxic singlet oxygen (1O2) under light irradiation. Consequently, mCGP displayed amplified synergistic therapeutic effects of long-term cancer starvation therapy and robust PDT, which would efficiently inhibit the cancer growth after a single administration. This cascade bioreactor would further facilitate the development of complementary modes for spatiotemporally controlled cancer treatment.
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