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无中介物的三重酶级联电化学适体传感器,具有外切酶辅助的靶标循环和杂交链式反应扩增。

Mediator-free triple-enzyme cascade electrocatalytic aptasensor with exonuclease-assisted target recycling and hybridization chain reaction amplification.

机构信息

Department of Kidney, Southwest Hospital, The Third Military Medical University, Chongqing 400038, China.

Key Laboratory on Luminescence and Real-Time Analysis, Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, China.

出版信息

Biosens Bioelectron. 2014 May 15;55:366-71. doi: 10.1016/j.bios.2013.12.008. Epub 2013 Dec 10.

Abstract

The amplified sensitive detection of protein is essential to biomedical research as well as clinical diagnosis. Here, we developed an ultrasensitive mediator-free triple-enzyme cascade electrocatalytic aptasensor for thrombin detection on the basis of exonuclease-assisted target recycling and hybridization chain reaction (HCR) amplification strategy. The double strands constructed by the hybridization of thrombin binding aptamer (S1) with its complementary strand (S2) were firstly assembled on the electrode. Upon addition of target to the system, the S1 recognized thrombin and left off electrode to make space for assembly of hybrid-primer probe (H0). Then, the H0 triggered the HCR to form the multi-functional hemin/G-quadruplex DNAzyme nanowires. In the mediator-free triple-enzyme cascade electrocatalytic amplification system, the hemin/G-quadruplex DNAzyme nanowires here simultaneously played three roles: the redox probe, NADH oxidase and HRP-mimicking DNAzyme, respectively, which effectively avoided the fussy redox probe and enzyme labeling process, serving a useful alternative or supplement to conventional assays that typically suffer from complexity and poor sensitivity. Additionally, in order to improve the assembly amount of hemin/G-quadruplex DNAzyme nanowire, the exonuclease-assisted target recycling amplification was used for the continuous removal of S1. As a result, the proposed method can detect thrombin specifically with a detection limit as low as 20 fM.

摘要

蛋白质的放大灵敏检测对于生物医学研究和临床诊断至关重要。在这里,我们基于外切酶辅助靶标循环和杂交链式反应(HCR)扩增策略,开发了一种超灵敏无介体的三重酶级联电化学生物适体传感器,用于凝血酶检测。首先,将凝血酶结合适体(S1)与其互补链(S2)杂交形成双链,然后将其组装在电极上。当向体系中加入靶标时,S1 识别凝血酶并从电极上脱离,为杂交引物探针(H0)的组装腾出空间。然后,H0 触发 HCR 形成多功能血红素/G-四链体 DNA 酶纳米线。在无介体的三重酶级联电化学生物放大系统中,血红素/G-四链体 DNA 酶纳米线同时发挥三种作用:分别作为氧化还原探针、NADH 氧化酶和 HRP 模拟 DNA 酶,有效地避免了繁琐的氧化还原探针和酶标记过程,为传统检测方法提供了有用的替代或补充,这些方法通常存在复杂性和低灵敏度的问题。此外,为了提高血红素/G-四链体 DNA 酶纳米线的组装量,利用外切酶辅助的靶标循环扩增来连续去除 S1。因此,该方法可以特异性地检测凝血酶,检测限低至 20 fM。

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