阿霉素
化学
激进的
羟基自由基
药物输送
芬顿反应
细胞内
赫拉
药理学
铁质
组合化学
生物物理学
癌细胞
化疗
生物化学
癌症
细胞
有机化学
医学
内科学
生物
作者
Honghui Li,Ying Zhang,Linda Liang,Jiaxing Song,Zixuan Wei,Shuyue Yang,Yunong Ma,Wei R. Chen,Cuixia Lu,Liewei Wen
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2022-01-30
卷期号:15 (3): 1096-1096
被引量:18
摘要
Doxorubicin (DOX) is a widely used first-line antitumor agent; however, acquired drug resistance and side effects have become the main challenges to effective cancer therapy. Herein, DOX is loaded into iron-rich metal-organic framework/tannic acid (TA) nanocomplex to form a tumor-targeting and acid-activatable drug delivery system (MOF/TA-DOX, MTD). Under the acidic tumor microenvironment, MTD simultaneously releases DOX and ferrous ion (Fe2+) accompanied by degradation. Apart from the chemotherapeutic effect, DOX elevates the intracellular H2O2 levels through cascade reactions, which will be beneficial to the Fenton reaction between the Fe2+ and H2O2, to persistently produce hydroxyl radicals (•OH). Thus, MTD efficiently mediates chemodynamic therapy (CDT) and remarkably enhances the sensitivity of chemotherapy. More encouragingly, the cancer cell killing efficiency of MTD is up to ~86% even at the ultralow equivalent concentration of DOX (2.26 μg/mL), while the viability of normal cells remained >88% at the same concentration of MTD. Taken together, MTD is expected to serve as drug-delivery nanoplatforms and •OH nanogenerators for improving chemo/chemodynamic synergistic therapy and reducing the toxic side effects.
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