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Core-Satellite Gold Nanoparticle@Silver Nanocluster Nanohybrids for Milk Allergen β-Lactoglobulin Detection Using the Electrochemical Aptasensor.

作者信息

Bai Tingting, Liu Yanjia, Liu Zhien, Teng Yue, Liu Pin, Peng Liusi, Wu Daohong

机构信息

College of Chemistry and Chemical Engineering, Jishou University, Jishou, Hunan 416000, P. R. China.

出版信息

J Agric Food Chem. 2025 Feb 5;73(5):3194-3203. doi: 10.1021/acs.jafc.4c08948. Epub 2025 Jan 27.

Abstract

Detecting β-lactoglobulin (β-Lg) with high sensitivity and selectivity is an urgent requirement due to nearly 80% of milk anaphylaxis, such as respiratory tract, skin urticaria, and gastrointestinal disorders, being caused by β-Lg. An ultrasensitive β-Lg electrochemical aptasensor utilizing core-satellite gold nanoparticle@silver nanocluster (AuNPs@AgNCs) nanohybrids as electrocatalysts was developed. First, β-Lg aptamer was anchored on gold electrodes and AuNPs to obtain high selectivity. Aptamer-cDNA-AuNPs conjugation was attached to the functionalized electrode with β-Lg as a "bridge" through the target-ligand interaction. Second, DNA-templated AgNCs were introduced via the hybridization of DNA templates oligonucleotide with cDNA anchored on AuNPs. The formed AuNPs@AgNCs nanohybrids showed enhanced catalytic performance toward the silver deposition reaction. This strategy is demonstrated by determining the oxidation current of produced silver nanoparticles (AgNPs) surrounding AuNPs by β-Lg. A detection limit of 0.87 fg/mL and a linear range of 0.001-1000 pg/mL were obtained. Finally, β-Lg content in food products was analyzed successfully, and RSD of 2.44-8.33% was obtained. The recovery of 87.54-113.70% and RSD of 0.95-9.29% was obtained for standard addition experiments. This proposed aptasensor exhibits excellent sensitivity, selectivity, reproducibility, and stability and has good practical application capability for complex food matrices.

摘要

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