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自组装多价荧光纳米体偶联多功能纳米材料,具有比色荧光和光热性能,增强免疫层析分析。

Self-Assembly Multivalent Fluorescence-Nanobody Coupled Multifunctional Nanomaterial with Colorimetric Fluorescence and Photothermal to Enhance Immunochromatographic Assay.

机构信息

Key Laboratory of Biology and Genetic Improvement of Oil Crops, Ministry of Agriculture and Rural Affairs; Laboratory of Risk Assessment for Oilseed Products (Wuhan), Ministry of Agriculture and Rural Affairs; Quality Inspection and Test Center for Oilseed Products, Ministry of Agriculture and Rural Affairs; Oil Crops Research Institute, Chinese Academy of Agricultural Sciences, Wuhan 430062, China.

Food Safety Research Institute, HuBei University, Wuhan 430062, China.

出版信息

ACS Nano. 2023 Oct 10;17(19):19359-19371. doi: 10.1021/acsnano.3c06930. Epub 2023 Oct 2.

Abstract

The multimodal lateral flow immunoassay (LFIA) has provided accurate and reliable results for fast and immediate detection. Nonetheless, multimodal LFIA remains challenging to develop biosensors with high sensitivity and tolerance to matrix interference in agro-food. In this study, we developed a self-assembled multivalent fluorescence-nanobody (Nb26-EGFP-H6) with 16.5-fold and 30-fold higher affinity and sensitivity than a monovalent nanobody (Nb26). Based on the Nb26-EGFP-H6, we synthesized enhanced immune-probes Zn-CN@Nb26-EGFP-H6 by pyrolyzing and oxidizing an imidazolating zeolite framework-8 (ZIF-8) to obtain photothermal metal-carbon nanomaterials (Zn-CN) for immobilizing Nb26-EGFP-H6. The rough and porous structure of Zn-CN with a large surface area facilitates the enrichment and immobilization of antibodies. A trimodal lateral flow immunoassay (tLFIA) with colorimetric, fluorescent, and photothermal triple signal outputs was constructed for the detection of aflatoxin B (AFB) in maize. Attractively, the Zn-CN-based tLFIA's multiplex guarantees accurate and sensitive detection of AFB, with triple signal detection limits of 0.0012 ng/mL (colorimetric signals), 0.0094 ng/mL (fluorescent signals), and 0.252 ng/mL (photothermal signals). The sensitivity of the trimode immunosensor was 628-fold and 42-fold higher than that of the original Nb26-based ELISA (IC) and the unimodal LFIA (LOD). This work provides an idea for constructing a sensitive, tolerant matrix and efficient and accurate analytical platform for rapidly detecting AFB in food.

摘要

多模态侧向流动免疫分析(LFIA)为快速即时检测提供了准确可靠的结果。然而,在农业食品中,开发具有高灵敏度和对基质干扰容忍度的多模态 LFIA 生物传感器仍然具有挑战性。在本研究中,我们开发了一种自组装的多价荧光纳米抗体(Nb26-EGFP-H6),其亲和力和灵敏度分别比单价纳米抗体(Nb26)高 16.5 倍和 30 倍。基于 Nb26-EGFP-H6,我们通过热解和氧化咪唑化沸石骨架-8(ZIF-8)合成了增强型免疫探针 Zn-CN@Nb26-EGFP-H6,以获得光热金属-碳纳米材料(Zn-CN)来固定 Nb26-EGFP-H6。Zn-CN 的粗糙多孔结构具有较大的表面积,有利于抗体的富集和固定。构建了一种具有比色、荧光和光热三重信号输出的三模态侧向流动免疫分析(tLFIA),用于检测玉米中的黄曲霉毒素 B(AFB)。引人注目的是,基于 Zn-CN 的 tLFIA 的多重保证了 AFB 的准确和灵敏检测,比色信号、荧光信号和光热信号的三重信号检测限分别为 0.0012ng/mL(比色信号)、0.0094ng/mL(荧光信号)和 0.252ng/mL(光热信号)。该三模态免疫传感器的灵敏度比原始基于 Nb26 的 ELISA(IC)和单模态 LFIA(LOD)分别高 628 倍和 42 倍。这项工作为构建用于快速检测食品中 AFB 的灵敏、耐受基质和高效准确的分析平台提供了思路。

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