Meng Xiangdan, Dai Wenhao, Zhang Kai, Dong Haifeng, Zhang Xueji
Research Center for Bioengineering and Sensing Technology , School of Chemistry and Bioengineering , University of Science & Technology Beijing , Beijing 100083 , P. R. China . Email:
National Institute of Precision Medicine & Health , Beijing , 100083 , P. R. China.
Chem Sci. 2017 Dec 1;9(5):1184-1190. doi: 10.1039/c7sc04725h. eCollection 2018 Feb 7.
Herein, we design a smart autonomous ATP self-powered strand-displacement cascade amplification (SDCA) system for highly sensitive multiple intracellular miRNA detection. Rationally engineered Y-motif DNA structures are functionalized on mesoporous silica-coated copper sulfide nanoparticles loaded with numerous ATPs (CuS@mSiO-Y/ATP) through pH stimulus-responsive disulfide bonds. The SDCA system is implemented by endogenous specific miRNA as a trigger and ATP as fuel released from the nanocarrier at acidic pH and photothermal stimuli-responsive CuS. The ATP self-powered SDCA process presents higher sensitivity compared to that without amplification for intracellular miRNA imaging. Two-color simultaneous and sensitive imaging of multiple cancer-related miRNAs in living cells is also confirmed. This enables facile and accurate differentiation between normal cells and different types of cancer cell using intracellular miRNA imaging, which improves the veracity and timeliness for early cancer diagnosis.
在此,我们设计了一种智能自主ATP自供电链置换级联放大(SDCA)系统,用于高灵敏度的多种细胞内miRNA检测。通过pH刺激响应性二硫键,将合理设计的Y基序DNA结构功能化于负载大量ATP的介孔二氧化硅包覆硫化铜纳米颗粒(CuS@mSiO-Y/ATP)上。SDCA系统以内源性特异性miRNA为触发剂,以酸性pH下从纳米载体释放的ATP为燃料,并结合光热刺激响应性CuS来实现。与无扩增的细胞内miRNA成像相比,ATP自供电SDCA过程具有更高的灵敏度。还证实了对活细胞中多种癌症相关miRNA进行双色同时且灵敏成像的能力。这使得利用细胞内miRNA成像能够轻松、准确地区分正常细胞和不同类型的癌细胞,提高了早期癌症诊断的准确性和及时性。