Custom-printed microfluidic chips using simultaneous ratiometric fluorescence with “Green” carbon dots for detection of multiple antibiotic residues in pork and water samples

IF 3.2 2区 农林科学 Q2 FOOD SCIENCE & TECHNOLOGY Journal of Food Science Pub Date : 2024-07-23 DOI:10.1111/1750-3841.17239
Wenming Yang, Lingling Cao, Hongjie Lu, Yao Huang, Wenqi Yang, Yuanzheng Cai, Sumin Li, Shuqi Li, Jianwen Zhao, Wanzhen Xu
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Abstract

In the evolving field of food safety, rapid and precise detection of antibiotic residues is crucial. This study aimed to tackle this challenge by integrating advanced inkjet printing technology with sophisticated microfluidic paper-based analytical devices (µPADs). The µPAD design utilized “green” quantum dots synthesized via an eco-friendly hydrothermal method using green white mulberry leaves as the carbon source, serving as the key fluorescent detection material. The action mechanism involved a photoinduced electron transfer system using red carbon dots (CDs) as electron donors and blue CDs combined with two-dimensional layered molybdenum disulfide (MoS2) nanosheets as electron acceptors. This system could quickly detect antibiotics within 10 min in pork and water samples, demonstrating high sensitivity and recovery rates: 6.5 pmol/L at 99.75%–110% for sulfadimethoxine, 3.3 pmol/L at 99%–105% for sulfamethoxazole, and 8.5 pmol/L at 98.5%–105% for tetracycline. It achieved a relative standard deviation under 5%, ensuring reliability and reproducibility. The fabricated sensor offered a promising application for the rapid and efficient on-site detection of antibiotic residues in food.

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使用 "绿色 "碳点同步比率荧光法定制打印的微流控芯片,用于检测猪肉和水样中的多种抗生素残留。
在不断发展的食品安全领域,快速、精确地检测抗生素残留至关重要。本研究旨在通过将先进的喷墨打印技术与精密的微流体纸基分析装置(µPADs)相结合来应对这一挑战。µPAD 的设计采用了以绿白桑叶为碳源、通过环保水热法合成的 "绿色 "量子点,作为关键的荧光检测材料。其作用机理是利用红色碳点作为电子供体,蓝色碳点结合二维层状二硫化钼(MoS2)纳米片作为电子受体,形成光诱导电子转移系统。该系统可在 10 分钟内快速检测猪肉和水样品中的抗生素,灵敏度高,回收率高:磺胺二甲氧嘧啶的回收率为 6.5 pmol/L,回收率为 99.75%-110%;磺胺甲噁唑的回收率为 3.3 pmol/L,回收率为 99%-105%;四环素的回收率为 8.5 pmol/L,回收率为 98.5%-105%。它的相对标准偏差低于 5%,确保了可靠性和可重复性。所制造的传感器在快速、高效地现场检测食品中的抗生素残留方面具有广阔的应用前景。
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来源期刊
Journal of Food Science
Journal of Food Science 工程技术-食品科技
CiteScore
7.10
自引率
2.60%
发文量
412
审稿时长
3.1 months
期刊介绍: The goal of the Journal of Food Science is to offer scientists, researchers, and other food professionals the opportunity to share knowledge of scientific advancements in the myriad disciplines affecting their work, through a respected peer-reviewed publication. The Journal of Food Science serves as an international forum for vital research and developments in food science. The range of topics covered in the journal include: -Concise Reviews and Hypotheses in Food Science -New Horizons in Food Research -Integrated Food Science -Food Chemistry -Food Engineering, Materials Science, and Nanotechnology -Food Microbiology and Safety -Sensory and Consumer Sciences -Health, Nutrition, and Food -Toxicology and Chemical Food Safety The Journal of Food Science publishes peer-reviewed articles that cover all aspects of food science, including safety and nutrition. Reviews should be 15 to 50 typewritten pages (including tables, figures, and references), should provide in-depth coverage of a narrowly defined topic, and should embody careful evaluation (weaknesses, strengths, explanation of discrepancies in results among similar studies) of all pertinent studies, so that insightful interpretations and conclusions can be presented. Hypothesis papers are especially appropriate in pioneering areas of research or important areas that are afflicted by scientific controversy.
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