“Four‐In‐One” Multifunctional Dandelion‐Like Gold@platinum Nanoparticles‐Driven Multimodal Lateral Flow Immunoassay

Author:

Wang Zexiang12,Zou Rubing1,Yi Jiuhong2,Wang Yidan2,Hu Hong3,Qi Chao4,Lai Weihua3,Guo Yirong1,Xianyu Yunlei24ORCID

Affiliation:

1. Institute of Pesticide and Environmental Toxicology Key Laboratory of Biology of Crop Pathogens and Insects of Zhejiang Province Ministry of Agriculture Key Laboratory of Molecular Biology of Crop Pathogens and Insects Zhejiang University Hangzhou 310058 China

2. College of Biosystems Engineering and Food Science Zhejiang University Hangzhou 310058 China

3. State Key Laboratory of Food Science and Resources Nanchang University Nanchang 330047 China

4. Key Laboratory of Precision Medicine in Diagnosis and Monitoring Research of Zhejiang Province Sir Run Run Shaw Hospital Zhejiang University Hangzhou 310016 China

Abstract

AbstractThe traditional lateral flow immunoassay (LFIA) with a single signal output mode may encounter challenges such as low sensitivity, poor detection range, and susceptibility to external interferences. These limitations hinder its ability to meet the growing demand for advanced LFIA. To address these issues, the rational development of multifunctional labels for multimodal LFIA emerges as a promising strategy. Herein, this study reports a multimodal LFIA using “four‐in‐one” multifunctional dandelion‐like gold@platinum nanoparticles (MDGP). The inherent properties of MDGP, such as the broad absorption spectrum, porous dandelion‐like nanostructure, and bimetallic composition with gold and platinum, endow them with capacities in dual spectral‐overlapped fluorescence quenching, optical readout, catalytic activity, and photothermal effect. Benefiting from their multifunctional properties, the MDGP‐LFIA enables multimodal outputs including fluorescent, colorimetric, and photothermal signals. This multimodal MDGP‐LFIA allows for the detection of acetamiprid at a range of 0.01–50 ng mL−1, with the lowest qualitative and quantitative detection results of 0.5 and 0.008 ng mL−1, respectively, significantly better than the traditional gold nanoparticles‐based LFIA. The diversity, complementarity, and synergistic effect of integrated output signals in this multimodal MDGP‐LFIA improve the flexibility, practicability, and accuracy of detection, holding great promise as a point‐of‐care testing platform in versatile application scenarios.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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