4.7 Article

Dual-color aggregation-induced emission nanoparticles for simultaneous lateral flow immunoassay of nitrofuran metabolites in aquatic products

Journal

FOOD CHEMISTRY
Volume 402, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.foodchem.2022.134235

Keywords

Dual-color aggregation-induced emission; nanoparticles; Immunochromatographic assays; Simultaneous detection; Nitrofuran metabolites; Fluorescent test strip

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A multiplex immunochromatographic assay based on dual-color aggregation-induced emission nanoparticles was developed for the simultaneous detection of nitrofuran metabolites. The method showed higher detection sensitivity and acceptable recoveries compared to commercial test strips.
Nitrofurans such as furaltadone and nitrofurantoin are a type of synthetic broad-spectrum antibiotics. Various fluorescent nanomaterials have been used as labeling materials in immunochromatographic assays (ICAs) for nitrofurans detection. However, previous fluorescent nanomaterials can undergo aggregation-caused quenching, leading to a decrease in the detection sensitivity. In this study, we developed a multiplex immunochromato-graphic assay (mICA) based on dual-color aggregation-induced emission nanoparticles (AIENPs) as signal labels for the simultaneous detection of 3-amino-5-morpholino-methyl-1,3-oxazolidinone (AMOZ) and 1-aminohydan-toin (AHD), which were the metabolites of furaltadone and nitrofurantoin, respectively. Under optimal condi-tions, the cut-off values of the mICA for derivatized AMOZ (2-NP-AMOZ) and AHD (2-NP-AHD) reached up to 3 and 5 ng/mL, respectively. These values are at least 166-and 200-fold higher than those of the commercial gold nanoparticles (GNPs)-based test strip, respectively. Furthermore, the test strip was successfully applied to the samples, with acceptable recoveries in the range of 83.0-98.2%.

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