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基于蓝/红光致量子点的分子印迹比率荧光传感器用于噻虫嗪的可视化测定。

A molecularly imprinted ratiometric fluorescence sensor based on blue/red carbon quantum dots for the visual determination of thiamethoxam.

机构信息

School of Pharmacy, Nanjing Medical University, Nanjing, Jiangsu, 211166, China.

Department of Radiotherapy, Fujian Medical University Affiliated Xiamen Humanity Hospital, Xiamen, Fujian, 361000, China.

出版信息

Biosens Bioelectron. 2023 Oct 15;238:115559. doi: 10.1016/j.bios.2023.115559. Epub 2023 Aug 2.

Abstract

Neonicotinoids such as thiamethoxam (TMX) were widely used in agricultural production and tended to accumulate in the environment, potentially harming human and ecosystem health. To enable widespread monitoring of TMX residues, it was essential to design a reliable and sensitive detection method. Here, we developed a novel smartphone-enablled molecularly imprinted ratiometric fluorescence sensing system for selective on-site detection of TMX. It was based on blue-emission carbon dots (CDs) wrapped with a molecularly imprinted layer (B-CDs@MIPs), which provided the response signal, while red-emission CDs (R-CDs) served as an internal reference. The fluorescence signal ratio of the sensor increased with the TMX concentration, resulting in an obvious fluorescence color change from red to blue. The sensor exhibited a satisfactory limit of detection (LOD) of 13.5 nM in fluorescence analysis while LOD of 70.1 nM in visual determination. In addition, the sensing system was validated using food and environment samples, exhibiting recoveries from 91.40% to 105.7%, indicating excellent reliability for TMX detection in actual samples. Thus, the sensing system developed in this study offered promising prospects for visual detection of pesticide residues in complex environmental samples.

摘要

新烟碱类杀虫剂如噻虫嗪(TMX)在农业生产中被广泛使用,且容易在环境中积累,从而对人类和生态系统健康构成潜在威胁。为了实现 TMX 残留的广泛监测,设计一种可靠、灵敏的检测方法至关重要。在这里,我们开发了一种基于智能手机的新型分子印迹比率荧光传感系统,用于 TMX 的选择性现场检测。该系统基于被分子印迹层包裹的蓝色发射碳点(B-CDs@MIPs)作为响应信号,而红色发射碳点(R-CDs)则作为内参。随着 TMX 浓度的增加,传感器的荧光信号比值增加,导致荧光颜色从红色变为蓝色,发生明显的变化。该传感器在荧光分析中的检测限(LOD)为 13.5 nM,而在目视测定中的 LOD 为 70.1 nM。此外,该传感系统已通过食品和环境样品进行了验证,实际样品中的 TMX 检测回收率在 91.40%至 105.7%之间,表明其具有出色的可靠性。因此,本研究开发的传感系统为复杂环境样品中农药残留的可视化检测提供了广阔的前景。

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