组成图示
示意图生成中
传感器类型
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检测对象
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检测原理
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检测灵敏度
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效应效果
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传感器的构成
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中文摘要
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英文摘要
To meet the urgent demand for monitoring tetracycline residues in milk-a critical food for vulnerable groups a novel fiber-optic Localized Surface Plasmon Resonance (LSPR) biosensor was engineered using gold-nanoparticle-labeled DNA triple-helix switches. The sensor operates via a target-activated disassembly: tetracycline binding dissociates the immobilized triple-helix, releasing gold nanoparticles and inducing a measurable LSPR blue shift. This active displacement amplifies the signal via localized refractive-index changes, enabling rapid, label-free detection. The sensor achieved excellent performance, with a linear range of 5-100 ng/mL and a low detection limit of 0.28 ng/mL. When applied to real milk samples, it delivered excellent recovery rates of 96.75%-104.15% (RSD <5.1%) and showed no statistically significant difference (p > 0.05) compared to HPLC reference analysis. Combining high sensitivity with a modular, engineering-flexible design, this platform not only provides a practical solution for on-site tetracycline screening in food safety but also holds significant potential for adapting to other antibiotics and environmental targets, extending its utility beyond dairy monitoring.