A novel multimodal nano-sensor detection system based on artificial intelligence and two-dimensional Mxenes for Ochratoxin A in food

IF 5.6 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY Food Control Pub Date : 2024-11-27 DOI:10.1016/j.foodcont.2024.111055
Qi Liu , Sutong Li , Zongyi Li , Caifeng Zou , Shi Feng , Juncheng Song , Jie Zhang , Xiangyang Li
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Abstract

Ochratoxin A (OTA), which is prone to contaminating food products, poses a significant threat to human health. To accurately detect and provide timely early warnings for OTA contamination (COTA) in food, a novel four-modal nano-biosensor detection system based on MXenes was developed in this work. MXenes is a new family of two-dimensional materials including vanadium carbide (V2C) MXenes, which has great potential in the field of biosensing and detection due to its large specific surface area, rich surface functional groups, and good chemical stability. By in-situ chemical etching, metal ion intercalation, and synergistic physical exfoliation techniques, V2C nano-materials (V2C-NMS) with excellent fluorescence quenching characteristics were synthesized, and V2C-NMS@ssDNA with excellent peroxidase like activity was constructed by functionalizing V2C-NMS with adapter. Based on this, a fluorescence/colorimetric biosensor for OTA was constructed, and the fluorescence/colorimetric signal output by the sensor had good linear relationship with COTA, with the detection limit (LOD) as low as 6.77 pg mL−1. Furthermore, a fully connected artificial neural network (FCANN) was developed based on a series of RGB values obtained from the fluorescence/colorimetric mode of the biosensor, and the fluorescence/colorimetry channel of the FCANN could accurately predict the COTA of the sample on-site or remotely in just a few seconds, with the LOD as low as 7.10 pg mL−1. Importantly, the four-mode method performed well in real sample detection, with recovery rates ranging from 95.33% to 105.79%, and the detection results of the four modalities could be mutually verified.
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基于人工智能和二维Mxenes的食品赭曲霉毒素A多模态纳米传感器检测系统
赭曲霉毒素A (Ochratoxin A, OTA)极易污染食品,对人类健康构成重大威胁。为了准确检测并及时预警食品中的OTA污染,本文开发了一种基于MXenes的新型四模态纳米生物传感器检测系统。MXenes是包括碳化钒(V2C) MXenes在内的一类新型二维材料,具有比表面积大、表面官能团丰富、化学稳定性好等优点,在生物传感和检测领域具有巨大的应用潜力。通过原位化学蚀刻、金属离子插入和协同物理剥离技术,合成了具有优异荧光猝灭特性的V2C纳米材料(V2C- nms),并通过适配器对V2C- nms进行功能化,构建了具有优异过氧化物酶样活性的V2C-NMS@ssDNA。在此基础上构建了OTA荧光/比色生物传感器,该传感器输出的荧光/比色信号与COTA呈良好的线性关系,检出限(LOD)低至6.77 pg mL−1。此外,基于生物传感器的荧光/比色模式获得的一系列RGB值,开发了全连接人工神经网络(FCANN), FCANN的荧光/比色通道可以在几秒钟内准确预测样品的现场或远程COTA, LOD低至7.10 pg mL−1。重要的是,四模式方法在实际样品检测中表现良好,回收率在95.33% ~ 105.79%之间,四种模式的检测结果可以相互验证。
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来源期刊
Food Control
Food Control 工程技术-食品科技
CiteScore
12.20
自引率
6.70%
发文量
758
审稿时长
33 days
期刊介绍: Food Control is an international journal that provides essential information for those involved in food safety and process control. Food Control covers the below areas that relate to food process control or to food safety of human foods: • Microbial food safety and antimicrobial systems • Mycotoxins • Hazard analysis, HACCP and food safety objectives • Risk assessment, including microbial and chemical hazards • Quality assurance • Good manufacturing practices • Food process systems design and control • Food Packaging technology and materials in contact with foods • Rapid methods of analysis and detection, including sensor technology • Codes of practice, legislation and international harmonization • Consumer issues • Education, training and research needs. The scope of Food Control is comprehensive and includes original research papers, authoritative reviews, short communications, comment articles that report on new developments in food control, and position papers.
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