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

IF 6.2 1区 农林科学 Q1 AGRICULTURE, MULTIDISCIPLINARY
Tingting Bai, Yanjia Liu, Zhien Liu, Yue Teng, Pin Liu, Liusi Peng and Daohong Wu*, 
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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.

Abstract Image

核心-卫星金Nanoparticle@Silver纳米簇纳米杂化物用于牛奶过敏原β-乳球蛋白的电化学感应传感器检测
由于近80%的乳过敏反应,如呼吸道、皮肤荨麻疹和胃肠道疾病,都是由β-Lg引起的,因此检测β-乳球蛋白(β-Lg)具有高灵敏度和选择性是迫切需要的。利用核-卫星金nanoparticle@silver纳米团簇(AuNPs@AgNCs)纳米杂化物作为电催化剂,研制了一种超灵敏的β-Lg电化学适体传感器。首先,将β-Lg适配体固定在金电极和aunp上,获得高选择性。适配体- cdna - aunps偶联物以β-Lg作为靶-配体相互作用的“桥梁”附着在功能化电极上。其次,通过DNA模板寡核苷酸与锚定在AuNPs上的cDNA杂交,引入DNA模板agnc。所形成的AuNPs@AgNCs纳米杂化物对银沉积反应具有增强的催化性能。通过β-Lg测定围绕AuNPs生成的银纳米颗粒(AgNPs)的氧化电流,证明了这一策略。检出限为0.87 fg/mL,线性范围为0.001 ~ 1000 pg/mL。最后成功分析了食品中β-Lg的含量,RSD为2.44 ~ 8.33%。标准添加实验回收率为87.54 ~ 113.70%,RSD为0.95 ~ 9.29%。该传感器具有良好的灵敏度、选择性、重现性和稳定性,对复杂食品基质具有良好的实际应用能力。
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来源期刊
Journal of Agricultural and Food Chemistry
Journal of Agricultural and Food Chemistry 农林科学-农业综合
CiteScore
9.90
自引率
8.20%
发文量
1375
审稿时长
2.3 months
期刊介绍: The Journal of Agricultural and Food Chemistry publishes high-quality, cutting edge original research representing complete studies and research advances dealing with the chemistry and biochemistry of agriculture and food. The Journal also encourages papers with chemistry and/or biochemistry as a major component combined with biological/sensory/nutritional/toxicological evaluation related to agriculture and/or food.
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