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Microsphere flow cytometry: A promising tool for on-site rapid screening of small-molecule harmful substances in food

作者:Guangyao Ying, Tingting Wang, Zheng Lu, Yuxin Wang, Haibo Gao, Jun Zhou, Gangjian Lin, Jinjun Zhang, Zhenling Luo, Huili Xia, Jun Li · 发表于:Applied Food Research · 年份:2025 · DOI:10.1016/j.afres.2025.101654 · 被引用次数:4 · 研究领域:Biosensors and Analytical Detection、Single-cell and spatial transcriptomics、Advanced Biosensing Techniques and Applications

• A multiplexed detection platform integrating microspheres, immunoassays, and flow cytometry. • Enables on-site, high-throughput screening with a portable flow cytometer (<15 kg). • Rapidly and simultaneously screens multiple small-molecule hazards in various food matrices. • Serves as a frontline screening tool complementing mass spectrometry confirmation. Food safety, jeopardized by pervasive small-molecule contaminants (e.g., mycotoxins, pesticides, and veterinary drug residues), demands rapid, multiplexed, and on-site detection methods to overcome limitations of conventional techniques like chromatography-mass spectrometry (costly, labor-intensive) and ELISA (single-target, low-throughput). Microsphere Flow Cytometry (MFC) addresses these challenges by synergizing microsphere-based immunocompetitive assays, fluorescent barcoding technology, and portable flow cytometry. This innovative platform achieves simultaneous detection of diverse analytes through encoded microspheres, delivering attogram-level sensitivity and analyzing dozens of samples per hour with minimal preprocessing. Key advancements include: (1) multiplexing capacityvia spectral encoding, enabling concurrent screening of various kinds of compounds; (2) portabilityvia compact flow cytometers (<15 kg), facilitating real-world deployment in non-laboratory settings; and (3) cost-effectiveness, balancing high-throughput advantages with affordability for routine screening. Challenges like matrix interference and c...