Liang Xin, Wang Xiuzhong, Zhang Yucui, Huang Baojian, Han Lei
College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, 700 Changcheng Road, Qingdao 266109, Shandong, China.
J Agric Food Chem. 2022 Mar 30;70(12):3898-3906. doi: 10.1021/acs.jafc.1c06954. Epub 2022 Mar 8.
A colorimetric assay based on an enzyme-inhibition strategy is promising for the on-site detection of pesticide residues. Due to the high cost and low stability of enzymes, nanozymes (nanomaterials with enzyme-like activities) are widely developed as substitutes of enzymes. However, the inhibition of pesticides toward enzymes and nanozymes generally lacks selectivity. It is of great significance and challenge to design a specific pesticide assay based on an activity-inhibition strategy. Here, we discovered that iridium nanoparticles possess both peroxidase-like and oxidase-like activities under the same conditions, and their catalytic mechanisms are different. The synergistic effect of dual enzyme-like activities enhanced the colorimetric signal. Interestingly, the dual enzyme-mimicking activities could be simultaneously inhibited, and the inhibition effect exhibited high selectivity toward malathion. Considering the popularity and the hazards of malathion, a malathion assay method based on activity inhibition was established without enzymes and a redundant process. The synergistic effect of the selective inhibition of dual enzyme-like activities enhanced the selectivity and sensitivity. The proposed assay strategy opens up an avenue for specific assay of various pesticides.
基于酶抑制策略的比色法在农药残留现场检测方面具有广阔前景。由于酶的成本高且稳定性低,纳米酶(具有类酶活性的纳米材料)作为酶的替代品被广泛开发。然而,农药对酶和纳米酶的抑制通常缺乏选择性。基于活性抑制策略设计特定的农药检测方法具有重大意义和挑战性。在此,我们发现铱纳米颗粒在相同条件下同时具有过氧化物酶样和氧化酶样活性,且它们的催化机制不同。双酶样活性的协同效应增强了比色信号。有趣的是,双模拟酶活性可同时被抑制,且抑制效果对马拉硫磷表现出高选择性。考虑到马拉硫磷的普遍性和危害性,建立了一种无需酶且无冗余过程的基于活性抑制的马拉硫磷检测方法。双酶样活性的选择性抑制的协同效应提高了选择性和灵敏度。所提出的检测策略为各种农药的特异性检测开辟了一条途径。