Zhang Mengli, Wang Yongqi, Li Na, Zhu Dangqiang, Li Feng
College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao, 266109, PR China; College of Plant Health & Medicine, Qingdao Agricultural University, Qingdao, 266109, PR China.
College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao, 266109, PR China.
Biosens Bioelectron. 2023 Oct 1;237:115554. doi: 10.1016/j.bios.2023.115554. Epub 2023 Jul 26.
Nanozyme-based colorimetric assays have shown great potential in the rapid and sensitive determination of pesticide residue in environment. However, the non-specific enzyme inhibition makes the assays generally lack of selectivity. In this study, we proposed a colorimetric sensing platform for the specific detection of the agricultural fungicide thiophanate-methyl (TM) based on its distinctive inhibitory effect on the nanozyme activity. Since TM contains the symmetric ethylenediamine- and bisthiourea-like groups, it displays strong affinity to the metal site, leading to a loss of the catalytic activity. Accordingly, a Cu-doped carbon nanozyme with excellent oxidase-like properties was designed, and the oxidation process of chromogenic substrate is promoted by Cu-induced generation of reactive oxygen species. Interestingly, the nanozyme activity can be directly and strongly restrained by TM, rather than other probably coexistent pesticides. Consequently, the as-proposed analytical method exhibits specific response toward TM and good linear relationship in the range of 0.2-15 μg mL with a low limit of detection of 0.04 μg mL (S/N = 3). Besides, a smartphone-assisted rapid detection was achieved through identifying the RGB value of the chromogenic system. This work provides a new nanozyme inhibition strategy for the specific detection of TM in environmental sample.
基于纳米酶的比色法在快速、灵敏地测定环境中的农药残留方面显示出巨大潜力。然而,非特异性酶抑制使得这些测定通常缺乏选择性。在本研究中,我们基于农用杀菌剂甲基硫菌灵(TM)对纳米酶活性独特的抑制作用,提出了一种用于特异性检测TM的比色传感平台。由于TM含有对称的乙二胺和双硫脲样基团,它对金属位点表现出很强的亲和力,导致催化活性丧失。因此,设计了一种具有优异类氧化酶性质的铜掺杂碳纳米酶,铜诱导产生的活性氧促进了显色底物的氧化过程。有趣的是,纳米酶活性可被TM直接且强烈地抑制,而不受其他可能共存农药的影响。因此,所提出的分析方法对TM表现出特异性响应,在0.2 - 15 μg mL范围内具有良好的线性关系,检测限低至0.04 μg mL(S/N = 3)。此外,通过识别显色体系的RGB值实现了智能手机辅助的快速检测。这项工作为环境样品中TM的特异性检测提供了一种新的纳米酶抑制策略。