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一种基于聚集诱导发光的新型电化学发光适体传感器,利用红色发光硫量子点实现对马拉硫磷的快速灵敏检测。

A Novel Aggregation-Induced Emission-Based Electrochemiluminescence Aptamer Sensor Utilizing Red-Emissive Sulfur Quantum Dots for Rapid and Sensitive Malathion Detection.

作者信息

Wu Yajun, Ma Dongxiao, Zhu Xiaoli, Xia Fangquan

机构信息

Key Laboratory of Interfacial Reaction & Sensing Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, China.

出版信息

Biosensors (Basel). 2025 Jan 20;15(1):64. doi: 10.3390/bios15010064.

Abstract

Rapid, effective, and cost-effective methods for large-scale screening of pesticide residues in the environment and agricultural products are important for assessing potential environmental risks and safeguarding human health. Here, we constructed a novel aggregation-induced emission (AIE) electrochemical aptamer (Apt) sensor based on red-emissive sulfur quantum dots (SQDs), which aimed at the rapid screening and quantitative detection of malathion. SQDs were prepared using a two-step oxidation method with good electrochemiluminescence (ECL) optical properties. These SQDs were modified onto the electrode surface to serve as ECL luminophores. Subsequently, Apt was introduced and modified to form a double-helix structure with the complementary chain (cDNA). The ECL signal was reduced because the biomolecules had poor electrical conductivity and inefficient electron transfer. When the target malathion was added, the double helix structure was unraveled, the malathion Apt fell off the electrode surface, and the ECL signal was restored. The linear range of detection was 1.0 × 10-1.0 × 10 mol·L, and the detection limit was 0.219 fM. The successful preparation of the sensor not only develops the ECL optical properties of SQDs but also expands the application of SQDs in ECL sensing.

摘要

快速、有效且经济高效的环境和农产品中农药残留大规模筛查方法对于评估潜在环境风险和保障人类健康至关重要。在此,我们构建了一种基于红色发光硫量子点(SQDs)的新型聚集诱导发光(AIE)电化学适配体(Apt)传感器,旨在快速筛查和定量检测马拉硫磷。采用两步氧化法制备的SQDs具有良好的电化学发光(ECL)光学性质。这些SQDs被修饰在电极表面作为ECL发光体。随后,引入并修饰Apt以与互补链(cDNA)形成双螺旋结构。由于生物分子导电性差且电子转移效率低,ECL信号降低。当加入目标马拉硫磷时,双螺旋结构解开,马拉硫磷Apt从电极表面脱落,ECL信号恢复。检测线性范围为1.0×10 -1.0×10 mol·L,检测限为0.219 fM。该传感器的成功制备不仅拓展了SQDs的ECL光学性质,还扩大了SQDs在ECL传感中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5556/11763466/06722d87a532/biosensors-15-00064-g001.jpg

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