化学
电化学发光
脱氧核酶
生物传感器
纳米技术
组合化学
检出限
色谱法
生物化学
材料科学
作者
Yan Cheng,Yin Huang,Jianping Lei,Lei Zhang,Huangxian Ju
摘要
A dual-potential ratiometric electrochemiluminescence (ECL) sensing approach based on Mg2+-dependent DNAzyme-regulated ECL signals of luminol and CdS quantum dots (QDs) is designed. The system consists of DNAzyme strand functionalized QDs as capture probes and cathode ECL emitters, luminol-reduced gold nanoparticles (Au@luminol) as anode ECL emitters, and a Mg2+ substrate strand modified with a cyanine dye (Cy5) fluorophore as the quencher. In the absence of Mg2+ ions, the cathode ECL of the QDs is quenched by electrochemiluminescence resonance energy transfer between CdS QDs and Cy5 molecule, while the anode ECL from Au@luminol is introduced into the system. On the other hand, in the presence of Mg2+ ions, the DNAzyme cleaves the substrate strand, and then releases the Cy5 and Au@luminol, which results in the recovery of the cathode ECL of the QDs and the decrease of the anode ECL simultaneously. On the basis of the ratio of ECL intensities at two excitation potentials, this approach was demonstrated to yield a linear calibration range from 10 to 10 000 μM Mg2+ before it was applied to Mg2+ detection in Hela cell extract. DNAzyme-triggered ratiometric ECL strategy with potential resolution would provide a reliable and sensitive method in biosensing and clinical diagnosis.
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