脱氧核酶
化学
前药
纳米技术
基因沉默
光热治疗
生物物理学
DNA
组合化学
生物化学
基因
材料科学
生物
作者
Xue Gong,Ruomeng Li,Jing Wang,Jie Wei,Kang Ma,Xiaoqing Liu,Fuan Wang
标识
DOI:10.1002/ange.202008413
摘要
Abstract The therapeutic performance of DNAzyme‐involved gene silencing is significantly constrained by inefficient conditional activation and insufficient cofactor supply. Herein, a self‐sufficient therapeutic nanosystem was realized through the delicate design of DNAzyme prodrugs and MnO 2 into a biocompatible nanocapsule with tumor‐specific recognition/activation features. The indocyanine green (ICG)‐modified DNA prodrugs are designed by splitting the DNAzyme and then reconstituted into the exquisite catalyzed hairpin assembly (CHA) amplification circuit. Based on the photothermal activation of ICG, the nanocapsule was disassembled to expose the MnO 2 ingredient which was immediately decomposed into Mn 2+ ions to supplement an indispensable DNAzyme cofactor on‐demand with a concomitant O 2 generation for enhancing the auxiliary phototherapy. The endogenous microRNA catalyzes the amplified assembly of DNA prodrugs via an exquisite CHA principle, leading to the DNAzyme‐mediated simultaneous silencing of two key tumor‐involved mRNAs. This self‐activated theranostic nanocapsule could substantially expand the toolbox for accurate diagnosis and programmable therapeutics.
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