Biomimetic affinity sensor for the ultrasensitive detection of neonicotinoids

新烟碱 啶虫脒 表面等离子共振 益达胺 检出限 胶体金 杀虫剂 适体 化学 农药残留 色谱法 纳米颗粒 纳米技术 材料科学 遗传学 农学 生物
作者
Ting-Wei Chang,Sheng‐Hann Wang,Iuan-Sheau Chin,Peizhen Li,Shu-Cheng Lo,Shu‐Yi Hsieh,Jung‐Hsin Lin,Pei‐Kuen Wei
出处
期刊:Biosensors and Bioelectronics [Elsevier]
卷期号:239: 115630-115630 被引量:5
标识
DOI:10.1016/j.bios.2023.115630
摘要

Multiple pesticides are often used in combination to protect crops from pests. This makes rapid on-site detection of pesticide contamination challenging. Herein, we describe a method for simultaneous detection of diverse neonicotinoid pesticides using a sensor that combines neonicotinoid-specific odorant-binding protein 2 (OBP2), which was cloned from an insect chemical sensing protein and modified gold nanoparticles with local surface plasmon resonance (LSPR)-based digital nanoplasmonometry (DiNM). When neonicotinoid pesticides bind to OBP2 on gold nanoparticles, the induced LSPR shift peak wavelength is too small to be measured using conventional LSPR immunoassays. DiNM records and compares the scattered image intensity in two adjacent wavelength bands, A and B, centered on the LSPR peak. It considers both the peak shift and the relative intensity change in these two bands, resulting in a significant LSPR signal enhancement. Then the spectral-image contrast was computed as the signal response. Using this approach, we obtained excellent limits of detection (LODs) of 1.4, 1.5, and 4.5 ppb for the neonicotinoids imidacloprid, acetamiprid, and dinotefuran, respectively. Blind tests demonstrated high positive and negative rates for teas, approximately 85 and 100%, respectively. Recombinant OBP2 produced in E. coli offers several advantages over antibodies, including high yield, time savings, and cost effectiveness. Moreover, this method is highly selective and sensitive to neonicotinoids, making it practical for field use.

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