检出限
多路复用
免疫分析
催化作用
化学
肉眼
人类健康
真菌毒素
欧洲联盟
纳米技术
Atom(片上系统)
计算机科学
组合化学
生化工程
材料科学
色谱法
生物信息学
嵌入式系统
工程类
生物
有机化学
食品科学
抗体
免疫学
医学
环境卫生
经济政策
业务
作者
Xinfa Cai,Fei Ma,Jun Jiang,Xianglong Yang,Zhaowei Zhang,Zelang Jian,Meijuan Liang,Peiwu Li,Yu Li
标识
DOI:10.1016/j.jhazmat.2022.129853
摘要
Sensitive, on-site and multiple detection of mycotoxins is a vital early-warning tool to minimize food losses and protect human health and the environment. Although paper-based lateral flow immunoassay (LFIA) has been extensively applied in mycotoxins monitoring, low-cost, portable, ultrasensitive and quantitative detection is still a formidable challenge. Herein, a series of Fe-N-C single-atom nanozymes (SAzymes) were synthesized and systematic characterized. The optimal Fe-N-C SAzyme with highly efficient catalytic performance was successfully used as both label and catalyst in lateral flow immunoassays for mycotoxin detection. By taking advantage of the catalytic amplified system, the qualitative and quantitative detection can be easily and flexibly done via observing the test lines by naked eyes or a smartphone, with the limit of detections (LODs) of 2.8 and 13.9 pg mL-1 for AFB1 and FB1, which were respectively over 700- and 71,000-fold lower than the maximum limit set by the European Union. Besides, underlying catalytic mechanisms and the active sites of the Fe-N-C SAzyme are also investigated by DFT simulation. This work not only provides a promising detection strategy for the application of advanced SAzymes but also offers experimental and theoretical guidelines to understand the active centers of Fe-N-C SAzymes and the catalytic process.
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