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"三合一":基于磁富集和光热信号放大的超灵敏侧向流动免疫分析。

"Three-in-One": Ultrasensitive Lateral Flow Immunoassay Driven by Magnetic Enrichment and Photothermal Signal Amplification.

机构信息

College of Food Science and Engineering, Northwest A&F University, Yangling, Shaanxi 712100, China.

Yantai Key Laboratory of Nanoscience and Technology for Prepared Food, Yantai Engineering Research Center of Green Food Processing and Quality Control, College of Food Engineering, Ludong University, Yantai, Shandong 264025, China.

出版信息

J Agric Food Chem. 2024 Aug 14;72(32):18171-18180. doi: 10.1021/acs.jafc.4c04261. Epub 2024 Aug 2.

Abstract

Conventional lateral flow immunoassay (LFIA) usually suffers from poor antimatrix interference, unsatisfactory sensitivity, and lack of quantitative ability for target analyte detection in food matrices. In response to these limits, here, multifunctional nanomaterial ZnFeO nanoparticles (ZFOs) were developed and integrated into LFIA for powerful magnetic separation/enrichment and colorimetric/photothermal target sensing. Under optimum conditions, the detection for clenbuterol (CL) with magnetic enrichment achieves 9-fold higher sensitivity compared to that without enrichment and 162-fold higher sensitivity compared to that based on traditional colloidal golds. Attributing the improved performances of ZFOs, CL can be detected at ultralow levels in pork and milk with 10 min of immunoreaction time. The vLODs were 0.01 μg kg for two modes, and the cutoff values of CL were about 5 and 3 μg kg, respectively. More importantly, the enrichment ZFO-mediated LFIA (ZE-LFIA) exhibits a similar limit of detection (LOD) in both buffer solution and food matrix, demonstrating a universal resistance to the food matrix. The multitudinous performance merits of this ZE-LFIA with high sensitivity, matrix tolerance, accuracy, and specificity have ensured a broad application potential for target detection of clenbuterol and can serve as an experience for other veterinary drug residues' detection.

摘要

传统的侧向流动免疫分析(LFIA)通常在食品基质中存在抗基质干扰能力差、灵敏度不令人满意以及缺乏定量分析能力等问题。针对这些限制,本文开发了多功能纳米材料 ZnFeO 纳米颗粒(ZFO),并将其集成到 LFIA 中,以实现强大的磁性分离/富集和比色/光热目标感应。在最佳条件下,与无富集相比,磁性富集对克伦特罗(CL)的检测灵敏度提高了 9 倍,与传统胶体金相比提高了 162 倍。由于 ZFO 的性能得到了改善,CL 可以在 10 分钟的免疫反应时间内从猪肉和牛奶中检测到超低水平。两种模式的 vLOD 均为 0.01 μg kg,CL 的截止值分别约为 5 和 3 μg kg。更重要的是,富集 ZFO 介导的 LFIA(ZE-LFIA)在缓冲溶液和食品基质中的检测限(LOD)相似,表现出对食品基质的普遍抗性。这种 ZE-LFIA 具有高灵敏度、基质耐受性、准确性和特异性等诸多性能优势,确保了 CL 等兽用药物残留目标检测的广泛应用潜力,并为其他兽医药物残留检测提供了经验。

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