A stochastic DNA walker electrochemiluminescence biosensor based on quenching effect of Pt@CuS on luminol@Au/Ni-Co nanocages for ultrasensitive detection of I27L gene

电化学发光 生物传感器 检出限 化学 费斯特共振能量转移 纳米笼 线性范围 材料科学 鲁米诺 猝灭(荧光) 荧光 催化作用 色谱法 生物化学 物理 量子力学
作者
Wei Gong,Shu Jia,Pan Ju,Shaoyan Wu,Yuzhou Chen,Shijia Ding,Wei Yang,Rong Luo
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:434: 134681-134681 被引量:40
标识
DOI:10.1016/j.cej.2022.134681
摘要

The common I27L mutations of the hepatocyte nuclear factor-1α (HNF1A) significantly increase the incidence of maturity-onset diabetes of the young (MODY). Hence, the establishment of an ultrasensitive detection strategy for I27L gene is crucial for the diagnosis and treatment of MODY. Herein, a signal-off electrochemiluminescence resonance energy transfer (ECL-RET) biosensor with effective target-induced stochastic DNA walker amplification was fabricated for I27L detection. In this biosensor, Prussian blue analogues (Ni-Co) nanocages/Au-supported luminol ([email protected]/Ni-Co) were used as ECL donors and exhibited excellent luminous efficiency. On the other hand, Pt nanoparticles-grown on copper sulphide ([email protected]) were used as energy acceptors to quench the initial signal based on RET between luminol and CuS. Moreover, the autonomous locomotion of I27L assisted by Exo III is the key in this DNA walker biosensor, as it continually induces new digestion processes on the electrode surface and quenches signals caused by the introduction of numerous acceptors. The efficient donor/acceptor pairs and DNA walker amplification system of the ECL-RET allowed the proposed biosensor to effectively detect I27L with a wide linear range of 0.0001 to 100 nM and a limit of detection as low as 23 fM. Thus, the ECL-RET biosensor provides a promising sensing platform for the diagnosis and typing of diabetes.
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