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可重复使用的智能手机辅助移动荧光生物传感器,用于快速、灵敏的现场痕量污染物定量检测。

Reusable smartphone-facilitated mobile fluorescence biosensor for rapid and sensitive on-site quantitative detection of trace pollutants.

机构信息

School of Environment and Natural Resources, Renmin University of China, Beijing, 100872, China.

Cell Biochemistry Laboratory, Biology Institute of Hebei Academy of Sciences, Shijiazhuang, 050051, China.

出版信息

Biosens Bioelectron. 2022 Mar 1;199:113863. doi: 10.1016/j.bios.2021.113863. Epub 2021 Dec 7.

Abstract

Increasing exposure to toxic pollutants highlights the need for their sensitive detection technologies that can be rapidly adapted and deployed in various settings. Optical biosensors are an excellent solution due to their outstanding features. However, the sophisticated and expensive optical design limits their scalability and actual application. Herein, an innovative reusable smartphone-facilitated mobile fluorescence biosensor (s-MFB) was built through integrating miniaturized all-fiber optical system and microfluidic system with smartphone. An asymmetric Y-shaped fiber optic coupler (Y-FOC) is constructed for simultaneous transmission of excitation light and the collected fluorescence. In particular, the incidence rays are introduced into the fiber bio-probe at a specific angle through the single-mode fiber of the Y-FOC, which enhances the evanescent wave field and the number of total internal reflections. The s-MBF showed a LOD for free Cy5.5 of 0.1 nM. Combining indirect competitive immunoassay with the s-MFB, this new assay, which achieve quantitative detection of bisphenol A and norfloxacin in 15 min with high sensitivity and reusability, substantially reduces the complexity and improves the scalability of trace pollutants detection. The adjunctive smartphone application allows on-site real-time quantitative detection, automated interpretation of reporting results, and early-warning of pollution accidents.

摘要

日益增加的有毒污染物暴露凸显了对其敏感检测技术的需求,这些技术能够快速适应并部署在各种环境中。光学生物传感器由于其出色的特点是一种极好的解决方案。然而,复杂且昂贵的光学设计限制了它们的可扩展性和实际应用。在此,通过将微型全光纤系统和微流控系统与智能手机集成,构建了一种创新的可重复使用的智能手机辅助移动荧光生物传感器(s-MFB)。构建了非对称 Y 型光纤耦合器(Y-FOC),用于同时传输激发光和收集的荧光。特别是,入射光线通过 Y-FOC 的单模光纤以特定角度引入光纤生物探针,从而增强了消逝场和全内反射的数量。s-MFB 对游离 Cy5.5 的检测限为 0.1 nM。通过将间接竞争免疫测定与 s-MFB 相结合,这种新的测定方法可在 15 分钟内实现对双酚 A 和诺氟沙星的定量检测,具有高灵敏度和可重复使用性,大大降低了痕量污染物检测的复杂性并提高了可扩展性。智能手机应用程序的附加功能允许现场实时定量检测、报告结果的自动解释以及污染事故的预警。

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