适体
啶虫脒
杀虫剂
环境修复
残余物
软件可移植性
纳米技术
农药残留
环境科学
计算机科学
污染
材料科学
益达胺
农学
程序设计语言
生物
遗传学
生态学
算法
作者
Xinai Zhang,Xueyue Huang,Zhuanlong Wang,Yang Zhang,Xiaowei Huang,Zhihua Li,Maria Daglia,Jianbo Xiao,Jiyong Shi,Xiaobo Zou
标识
DOI:10.1016/j.cej.2021.132243
摘要
Pesticide residual has always been a severe environmental issue due to its adverse effects on ecosystems. The development of user-friendly program is imperative for efficient monitoring and control of pesticides with respect to environmental protection. To this end, we herein report a bioinspired nanozyme enabling portable glucometer readout for assessing pesticide residual, based on an aptamer-switching approach. Notably, Co-based metal–organic framework (Co-MOF) decorated by aptamer is built, as a signal probe, for identifying acetamiprid (as a model analyte). Comparing with the enzyme-based methods, which works in pH 6 ∼ 7, our system has high stability and DNA hybridization efficiency beyond pH 8. By introducing completive binding between acetamiprid and MOF-aptamer into glucose consumption, this method exhibits a wide linear range (1 ∼ 200 nM) with a low limit of detection (0.42 nM, corresponding to 0.093 μg kg−1 by weight), well qualified for the regular monitoring of acetamiprid residue specified by World Health Organization. With virtues of portability, sensitivity and anti-interference, the glucometer-based protocol enables us to innovatively carry out pesticide monitoring in agricultural soil, water source and foodstuffs, thereby holding promise for environmental monitoring in home-style and in-field scenarios.
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