Key Laboratory of Macrocyclic and Supramolecular Chemistry of Guizhou Province, Guizhou University, Guiyang 550025, China.
ShenQi Ethnic Medicine College of Guizhou Medical University, Guiyang 550025, China.
J Agric Food Chem. 2022 May 18;70(19):5784-5793. doi: 10.1021/acs.jafc.2c00655. Epub 2022 May 4.
In order to prevent and control the effects of pesticide residues on human health and the ecological environment, the rapid, highly sensitive, and selective detection of multiple pesticide residues has become an urgent problem to be solved. Herein, a lab-on-a-molecule probe based on a host-guest complex (ThT@Q[8] probe) has been developed to simultaneously analyze multiple aromatic pesticides under single wavelength excitation, such as fuberidazole, thiabendazole, carbendazim, thidiazuron, and tricyclazole. The fluorescence titration spectra of the ThT@Q[8] probe with the five pesticides mentioned above showed that the fluorescence intensity exhibited a good linear correlation with the pesticide concentration and the limit of detection was as low as 10 M. Because the ThT@Q[8] probe exhibits diverse fluorescence color changes to the five pesticides studied under a 365 nm ultraviolet lamp, we fabricated a single probe used to detect multiple analytes in the RGB triple channel by extracting the RGB variations. Principal component analysis and linear discriminant analysis proved that the ThT@Q[8] probe can recognize and distinguish five pesticides and can be applied at different concentrations. In real samples, the ThT@Q[8] probe recognized and distinguished five pesticides in tap water and Huaxi River water. The H NMR spectra results proved that a charge-transfer complex of ThT and pesticides in the Q[8] cavity may be formed. Moreover, we selected a test strip as a carrier to detect pesticides. The results indicate it can be used to quickly and conveniently detect different pesticides due to the rapid color change. Besides, the ThT@Q[8] probe has good cell permeability and can be used to detect pesticide residues in living cells. This work has laid the foundation for the qualitative and quantitative multitarget detection of pesticide residues.
为了防止和控制农药残留对人类健康和生态环境的影响,快速、高灵敏度、选择性地检测多种农药残留已成为亟待解决的问题。在此,我们开发了一种基于主体-客体复合物(ThT@Q[8]探针)的分子级实验室探针,可在单波长激发下同时分析多种芳香族农药,如氟菌唑、噻菌灵、多菌灵、噻苯隆和三唑酮。上述五种农药与 ThT@Q[8]探针的荧光滴定光谱表明,荧光强度与农药浓度呈良好的线性关系,检测限低至 10 M。由于 ThT@Q[8]探针在 365nm 紫外灯下对五种研究农药表现出多样的荧光颜色变化,我们通过提取 RGB 变化,制备了一种可在 RGB 三通道中检测多种分析物的单探针。主成分分析和线性判别分析证明,ThT@Q[8]探针可以识别和区分五种农药,并可应用于不同浓度。在实际样品中,ThT@Q[8]探针可以识别和区分自来水中和花溪河水中的五种农药。1H NMR 光谱结果证明,ThT 与 Q[8]空腔内的农药可能形成电荷转移复合物。此外,我们选择了测试条作为载体来检测农药。结果表明,由于颜色变化迅速,它可以用于快速方便地检测不同的农药。此外,ThT@Q[8]探针具有良好的细胞通透性,可用于检测活细胞中的农药残留。这项工作为农药残留的定性和定量多目标检测奠定了基础。