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基于荧光探针技术检测 18 种二元和 24 种三元农药组合对羧酸酯酶的联合毒性。

Detecting the combined toxicity of 18 binary and 24 ternary pesticide combinations to carboxylesterase based on fluorescence probe technology.

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian, China.

A Key Laboratory of Risk Assessment and Control for Environment and Food Safety, Tianjin Institute of Health and Environmental Medicine, Tianjin, China.

出版信息

J Environ Sci Health B. 2022;57(4):305-315. doi: 10.1080/03601234.2022.2049158. Epub 2022 Mar 14.

DOI:10.1080/03601234.2022.2049158
PMID:35287560
Abstract

A rapid test method for the determination of pesticide toxicity was established by using carboxylesterase (CES) and fluorescence probe based on the principle of enzyme inhibition, and this method was applied to detect the combined toxicity of 18 binary and 24 ternary pesticide combinations commonly used for fruits and vegetables to CES. The results show that chlorpyrifos + carbendazim, carbofuran + carbendazim, imidacloprid + carbendazim, imidacloprid + dimethomorph, dimethoate + dimethomorph, prochloraz + carbendazim and imidacloprid + acetamiprid + carbendazim had synergistic effects under three concentration gradients, it indicated that most binary combinations containing carbendazim or imidacloprid had synergistic effects. Based on structure-activity relationship between pesticides and CES, pesticides with phosphate ester bonds had great toxicity to CES, or though they have no toxicity to CES alone, they showed a strong synergistic effect when mixed with other pesticides. Pesticides with amide or ester bond had medium toxicity and little synergistic effect. Pesticides with urea, carbamate or nitrite nitrogen group had little or no toxicity, while there was a strong synergistic effect after mixing with other pesticides. The test method and results in this study can provide scientific basis for risk assessment of cumulative exposure to mixed pesticide residues.

摘要

建立了一种基于酶抑制原理的利用羧酸酯酶(Carboxylesterase,CES)和荧光探针快速检测农药毒性的方法,并将其应用于检测 18 种二元和 24 种三元果蔬常用农药组合对 CES 的联合毒性。结果表明,在三种浓度梯度下,毒死蜱+多菌灵、克百威+多菌灵、吡虫啉+多菌灵、吡虫啉+烯酰吗啉、乐果+烯酰吗啉、丙环唑+多菌灵和吡虫啉+乙螨唑+多菌灵均具有协同作用,这表明大多数含有多菌灵或吡虫啉的二元组合均具有协同作用。基于农药与 CES 的结构-活性关系,具有磷酸酯键的农药对 CES 具有很大的毒性,或者虽然它们单独对 CES 没有毒性,但与其他农药混合时表现出很强的协同作用。具有酰胺或酯键的农药具有中等毒性和较小的协同作用。具有脲基、氨基甲酸酯或亚硝酸盐基团的农药毒性较小或没有毒性,但与其他农药混合后具有很强的协同作用。本研究中的测试方法和结果可为混合农药残留累积暴露风险评估提供科学依据。

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