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基于 3-D DNA 纳米机器信号探针的电化学生物发光传感器,由蛋白-适体结合物复合物提供动力,用于超灵敏黏蛋白 1 的检测。

Electrochemiluminescence Biosensor Based on 3-D DNA Nanomachine Signal Probe Powered by Protein-Aptamer Binding Complex for Ultrasensitive Mucin 1 Detection.

机构信息

Key Laboratory of Luminescent and Real-Time Analytical Chemistry (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University , Chongqing 400715, People's Republic of China.

出版信息

Anal Chem. 2017 Apr 4;89(7):4280-4286. doi: 10.1021/acs.analchem.7b00347. Epub 2017 Mar 20.

Abstract

Herein, we fabricated a novel electrochemiluminescence (ECL) biosensor for ultrasensitive detection of mucin 1 (MUC1) based on a three-dimensional (3-D) DNA nanomachine signal probe powered by protein-aptamer binding complex. The assembly of 3-D DNA nanomachine signal probe achieved the cyclic reuse of target protein based on the protein-aptamer binding complex induced catalyzed hairpin assembly (CHA), which overcame the shortcoming of protein conversion with enzyme cleavage or polymerization in the traditional examination of protein. In addition, CoFeO, a mimic peroxidase, was used as the nanocarrier of the 3-D DNA nanomachine signal probe to catalyze the decomposition of coreactant HO to generate numerous reactive hydroxyl radical OH as the efficient accelerator of N-(aminobutyl)-N-(ethylisoluminol) (ABEI) ECL reaction to amplify the luminescence signal. Simultaneously, the assembly of 3-D DNA nanomachine signal probe was executed in solution, which led to abundant luminophore ABEI be immobilized around the CoFeO surface with amplified ECL signal output since the CHA reaction was occurred unencumberedly in all directions under homogeneous environment. The prepared ECL biosensor showed a favorable linear response for MUC1 detection with a relatively low detection limit of 0.62 fg mL. With excellent sensitivity, the strategy may provide an efficient method for clinical application, especially in trace protein determination.

摘要

在此,我们基于蛋白质-适体结合复合物构建了一种新型的电化学发光(ECL)生物传感器,用于超灵敏检测黏蛋白 1(MUC1)。3-D DNA 纳米机器信号探针的组装实现了基于蛋白质-适体结合复合物诱导的催化发夹组装(CHA)的目标蛋白质的循环再利用,克服了传统蛋白质检测中酶切割或聚合的蛋白质转化的缺点。此外,CoFeO 作为 3-D DNA 纳米机器信号探针的纳米载体,模拟过氧化物酶,用于催化共反应物 HO 的分解,产生大量的反应性羟基自由基 OH,作为 N-(氨基丁基)-N-(乙基异鲁米诺)(ABEI)ECL 反应的有效加速剂,以放大发光信号。同时,3-D DNA 纳米机器信号探针的组装在溶液中进行,导致大量的发光体 ABEI 被固定在 CoFeO 表面周围,由于 CHA 反应在均匀环境中可以无阻碍地向各个方向进行,因此输出放大的 ECL 信号。所制备的 ECL 生物传感器对 MUC1 的检测表现出良好的线性响应,检测限相对较低,为 0.62 fg mL。该策略具有出色的灵敏度,可能为临床应用,特别是痕量蛋白质的测定提供一种有效的方法。

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