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1.
Food Chem ; 424: 136366, 2023 Oct 30.
Article in English | MEDLINE | ID: mdl-37201472

ABSTRACT

We presented a colorimetric/fluorescent dual-mode immunochromatographic assay (ICA) for the sensitive detection of Escherichia coli O157:H7. The use of polydopamine (PDA)-modified gold nanoparticles (AuNPs) with broadband absorption allowed for excellent colorimetry signals for the ICA detection. Moreover, the absorption spectrum of PDA-AuNPs significantly overlaps with the excitation and emission spectra of ZnCdSe/ZnS quantum dots (QDs), resulting in effective quenching of the QDs fluorescence due to the inner filter effect. The fluorescence intensity changes induced by PDA-AuNPs were utilized for the sensitive detection of E. coli O157:H7, achieving a detection limit of 9.06 × 101 CFU/mL, which was 46-fold lower than that of traditional AuNPs-based immunoassay. The proposed immunosensor exhibited the recovery rate between 80.12% and 114.69% in detecting actual samples, indicating its reliability and satisfactory accuracy. This study provides insights into dual-mode signal outputs and the ICA development for food safety applications.


Subject(s)
Biosensing Techniques , Escherichia coli O157 , Metal Nanoparticles , Gold/chemistry , Immunoassay/methods , Biosensing Techniques/methods , Reproducibility of Results , Metal Nanoparticles/chemistry
2.
Biosens Bioelectron ; 206: 114150, 2022 Jun 15.
Article in English | MEDLINE | ID: mdl-35278850

ABSTRACT

Despite their potential for signal amplification in immunochromatographic assays (ICAs) with Au nanoparticles (AuNPs) as probes, metal growth methods are of limited practical applicability given their complex non-specificity and lack of robust growth schemes. Here, we propose a novel method of polyallylamine hydrochloride (PAH)-mediated metal growth for the detection of Escherichia coli O157:H7 by AuNP-ICA. The developed method relies on the highly controlled growth of Cu shells on the AuNP core and allows one to achieve highly enhanced colorimetric signals by controlling PAH as the growth framework. The introduction of PAH eliminates the non-specific adsorption of Cu ions on the nitrocellulose membrane and thus provides maximized and effective signal-to-noise ratios to achieve a detection limit of 9.8 CFU/mL for E. coli O157:H7. Moreover, the newly developed detection method exhibits good reproducibility (coefficient of variation <13%), remarkable stability, and practical applicability. The PAH-mediated signal enhancement system paves the way to the realization of stable metal growth methods based on Au, Ag, and other metals and is well suited for the rapid, stable, and sensitive detection of food-borne pathogens using the AuNP-ICA platform.


Subject(s)
Biosensing Techniques , Escherichia coli O157 , Metal Nanoparticles , Food Microbiology , Gold/chemistry , Immunoassay , Metal Nanoparticles/chemistry , Reproducibility of Results
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