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基于 PB@Fe-COF@Au 纳米粒子的具有三重过氧化物酶样活性和多个捕获位点的球形水凝胶传感器,用于有效检测有机磷农药。

Spherical Hydrogel Sensor Based on PB@Fe-COF@Au Nanoparticles with Triplet Peroxidase-like Activity and Multiple Capture Sites for Effective Detection of Organophosphorus Pesticides.

机构信息

School of Pharmacy, Nanjing Medical University, Nanjing, Jiangsu211166, P.R. China.

Key Laboratory of Cardiovascular & Cerebrovascular Medicine, School of Pharmacy, Nanjing Medical University, Nanjing, Jiangsu211166, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Feb 8;15(5):6473-6485. doi: 10.1021/acsami.2c19921. Epub 2023 Jan 30.

Abstract

The residues of organophosphorus pesticides (OPs) have drawn worldwide increasing attention because of their potential fatal effects on human health and ecological systems. It is of great significance to develop an efficient and portable method for in-field detection of OPs. Herein, a novel core-shell nanocomposite of prussian blue@Fe-covalent organic framework@Au (PB@Fe-COF@Au) was constructed. Fe and Fe in PB nanoparticle (PBNP) cores, Fe-porphyrin in COF shells, and AuNPs grown on shells all acted as peroxidase-like catalytic active sites, enabling PB@Fe-COF@Au to possess triplet peroxidase-like activity. A colorimetric, affordable, sensitive, and selective strategy was designed to detect OPs. Compared with previous reports, this sensor realized a wider linear range for chlorpyrifos of 10-800 ng mL with a relatively lower detection limit of 0.61 ng mL, which was attributed to the overlapping triple catalytic sites of PB@Fe-COF@Au and triple response sites to OPs. The assay was successfully employed to detect chlorpyrifos in food and environmental samples. Moreover, to meet the demand of in-field detection for OPs, a spherical hydrogel method based on PB@Fe-COF@Au with visual, portable, and equipment-free features was fabricated. This work provides a new pathway to design and apply effective nanozymes for on-site monitoring of pesticides.

摘要

有机磷农药(OPs)残留因其对人类健康和生态系统的潜在致命影响而引起了全世界的日益关注。开发一种用于现场检测 OPs 的高效、便携方法具有重要意义。本文构建了一种普鲁士蓝@Fe-共价有机骨架@Au(PB@Fe-COF@Au)的新型核壳纳米复合材料。PB 纳米颗粒(PBNP)核中的 Fe 和 Fe、COF 壳中的 Fe-卟啉以及壳上生长的 AuNPs 都充当过氧化物酶样催化活性位点,使 PB@Fe-COF@Au 具有三重过氧化物酶样活性。设计了一种比色、经济实惠、灵敏且选择性的检测 OPs 的策略。与以前的报告相比,该传感器实现了更广的毒死蜱线性范围(10-800ng/mL),相对较低的检测限为 0.61ng/mL,这归因于 PB@Fe-COF@Au 的重叠三重催化位点和对 OPs 的三重响应位点。该测定法成功用于检测食品和环境样品中的毒死蜱。此外,为了满足现场检测 OPs 的需求,基于 PB@Fe-COF@Au 构建了一种具有可视化、便携和无需设备的球形水凝胶方法。这项工作为设计和应用有效的纳米酶用于现场监测农药提供了新途径。

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