纳米反应器
葡萄糖氧化酶
光热治疗
过氧化氢
癌症治疗
过氧化氢酶
光动力疗法
吲哚青绿
化学
联合疗法
纳米技术
材料科学
组合化学
癌症
酶
生物传感器
医学
药理学
生物化学
有机化学
纳米颗粒
外科
内科学
作者
Yao Zhou,Boyi Niu,Yiting Zhao,Jintao Fu,Ting Wen,Kaixin Liao,Guilan Quan,Xin Pan,Chuanbin Wu
标识
DOI:10.1016/j.jconrel.2021.09.041
摘要
Starvation therapy based on glucose oxidase (GOx) has attracted considerable attention in tumor treatment. However, several shortcomings severely hinder its further applications, including limited therapeutic efficacy, poor enzyme stability, and potential side effects. Herein, a strategy of cascade reaction-enhanced combined therapy based on the oxygen-evolving multifunctional nanoreactors is proposed for tumor therapy. The GOx and catalase (CAT) are immobilized in metal-organic frameworks by biomimetic mineralization to improve their stability via spatial confinement. The GOx can consume glucose, reduce ATP levels, and down-regulate the expression of heat shock proteins, which consequently sensitize tumor cells to indocyanine green-based photothermal therapy. Furthermore, the hydrogen peroxide generated by GOx as well as overexpressed in tumor can be decomposed by CAT and continuously generate oxygen, which further enhance the efficacy of oxygen-dependent starvation therapy and photodynamic therapy. The nanoreactors are directly delivered to the superficial tumor by microneedles, achieving efficient tumor accumulation and dramatically strengthened antitumor efficacy without obvious side effects, which provides a valuable paradigm for the application of cascade reaction-based combined therapy.
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