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将多层量子点纳米珠引入竞争侧向流动分析中,用于复杂样品中农药的超灵敏和定量监测。

Introduction of multilayered quantum dot nanobeads into competitive lateral flow assays for ultrasensitive and quantitative monitoring of pesticides in complex samples.

机构信息

School of Physics and Electronic Information, Anhui Normal University, Wuhu, 241000, People's Republic of China.

Hefei Institute of Physical Science, Chinese Academy of Sciences, Hefei, 230036, People's Republic of China.

出版信息

Mikrochim Acta. 2023 Aug 22;190(9):361. doi: 10.1007/s00604-023-05913-w.

Abstract

A competitive fluorescent lateral flow assay (CFLFA) is proposed for direct, ultrasensitive, quantitative detection of common pesticides imidacloprid (IMI) and carbendazim (CBZ) in complex food samples by using silica-core multilayered quantum dot nanobeads (SiO-MQB) as liquid fluorescent tags. The SiO-MQB nanostructure comprises a 200-nm SiO core and a shell of hundreds of carboxylated QDs (excitation/emission maxima ~365/631 nm), and can generate better stability, superior dispersibility, and higher luminescence than traditional fluorescent beads, greatly improving the sensitivity of current LFA methods for pesticides. Moreover, using liquid SiO-MQB directly instead of via the conjugate pad both simplifies the structure of LFA system and improves the efficiency of immunobinding reactions between nanotags and the targets. Applying these methods, the established CFLFA realized the stable and accurate detection of IMI and CBZ in 12 min, with detection limits down to 1.94 and 14.79 pg/mL, respectively. The SiO-MQB-CFLFA is practicable for application to real food samples (corn, apple, cucumber, and cabbage), and undoubtedly a promising and low-cost tool for on-site monitoring of trace pesticide residues.

摘要

提出了一种竞争性荧光侧向流动分析(CFLFA)方法,用于使用硅核多层量子点纳米珠(SiO-MQB)作为液体荧光标记物,直接、灵敏、定量检测复杂食品样品中的常见农药吡虫啉(IMI)和多菌灵(CBZ)。SiO-MQB 纳米结构由 200nm 的 SiO 核和数百个羧基化 QD(激发/发射最大值约为 365/631nm)壳组成,与传统荧光珠相比,其具有更好的稳定性、更好的分散性和更高的发光效率,大大提高了当前农药 LFA 方法的灵敏度。此外,直接使用液体 SiO-MQB 而不是通过结合垫来使用,这不仅简化了 LFA 系统的结构,而且提高了纳米标记物与目标物之间免疫结合反应的效率。应用这些方法,建立的 CFLFA 实现了在 12 分钟内对 IMI 和 CBZ 的稳定和准确检测,检测限分别低至 1.94 和 14.79pg/mL。SiO-MQB-CFLFA 适用于实际食品样品(玉米、苹果、黄瓜和白菜)的应用,无疑是一种用于现场监测痕量农药残留的有前途且低成本的工具。

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