纳米反应器
提拉帕扎明
肿瘤微环境
化学
葡萄糖氧化酶
生物物理学
纳米技术
组合化学
癌细胞
药物输送
纳米颗粒
阿霉素
材料科学
癌症研究
肿瘤细胞
生物化学
生物
酶
细胞毒性
体外
作者
Zining Hao,Xin Cheng,Cong Cong,Xuwu Zhang,Weidong Zhang,Qianqian Zhao,Shuai Wang,Dawei Gao
标识
DOI:10.1016/j.cej.2020.126571
摘要
Tumor microenvironment has been used as the driving force of nano-therapy systems. However, due to its own complexity and heterogeneity, the therapeutic effects of many systems are still hindered by inherent cellular barriers. Herein, we designed a biodegradable nanoreactor showing interlocking “butterfly effect”, which reconstructed the tumor microenvironment (TME) by functional “butterfly” and initiated the next cascade reaction to enhance the efficacy. The silver nanocubes (Ag NCs) as the core, then loading polydopamine (PDA), glucose oxidase (GOx), and tirapazamine (TPZ), which was further disguised by tumor cytomembrane to construct as a bionic nanoreactor [email protected]/GOx/[email protected] (APGTM). When the nanoreactors were homologously targeted to the tumor site, GOx as the “butterfly” caused the tumor cells entering starvation state by consuming glucose and O2 and generating gluconate and H2O2. Furtherly, the generated hypoxia state activated TPZ to achieve chemotherapy, and the non-toxic Ag NCs were degraded into toxic Ag+ under high H2O2 levels to carry out metal ions therapy. This “butterfly effect” of nanoreactor launching a triplet chain reaction can solve the problem of the lack of reciprocity on multi-modal therapy by reshaped the TME, which opens a new way for accurate and effective tumor cell ablation.
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