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基于超顺磁性微珠的微流控荧光免疫分析平台用于面粉中赭曲霉毒素A的快速检测

Superparamagnetic Bead-Based Microfluidic Fluoroimmunoassay Platform for Rapid Ochratoxin A Detection in Flour.

作者信息

López-Puertollano Daniel, Tobias Charlie, Bell Jérémy, Abad-Somovilla Antonio, Abad-Fuentes Antonio, Rurack Knut

机构信息

Chemical and Optical Sensing Division, Bundesanstalt für Materialforschung und -prüfung (BAM), Richard-Willstätter-Str. 11, Berlin 12489, Germany.

Department of Organic Chemistry, University of Valencia, Doctor Moliner 50, Burjassot, Valencia 46100, Spain.

出版信息

ACS Sens. 2025 Aug 22;10(8):5834-5843. doi: 10.1021/acssensors.5c01119. Epub 2025 Jul 30.

Abstract

Simplification and reduction of time and costs are the primary goals in the development and use of onsite methods in diagnostics and food safety. To facilitate the transition from laboratory techniques to simple, miniaturized devices, we have developed a modular microfluidic platform. This platform integrates a competitive fluorescence immunoassay on the surface of superparamagnetic beads, serving as a complementary technique to traditional cytometry assays. In the first chip module, a fast competitive reaction (5 min) occurs, after which the particles are retained in the second module. This module consists of a PDMS chip and a permanent magnet, allowing only the fluorescent competitor to reach the detection module. Ochratoxin A (OTA) was chosen as the model analyte for device development, using fluorescein-labeled OTA as a competitor. The system efficiently separates particles, with OTA concentration directly correlated to the amount of fluorescent competitor remaining in solution after the competitive reaction. This innovative setup allows to perform rapid measurements with small sample volumes in a short time (10 min), achieving a limit of detection for OTA of 1.2 μg L. The system was successfully applied to the accurate determination of OTA in wheat flour spiked at regulatorily relevant concentrations. Using this device, conventional cytometry immunoassays can be seamlessly transformed into user-friendly, miniaturized analytical methods at reduced cost for applications outside of a laboratory directly at the point of need.

摘要

简化流程、减少时间和成本是诊断与食品安全领域现场检测方法开发与应用的主要目标。为推动从实验室技术向简单小型化设备的转变,我们开发了一种模块化微流控平台。该平台在超顺磁性微珠表面集成了竞争性荧光免疫分析,作为传统细胞分析方法的补充技术。在第一个芯片模块中,快速竞争性反应(5分钟)发生,之后颗粒被保留在第二个模块中。该模块由一个聚二甲基硅氧烷(PDMS)芯片和一块永久磁铁组成,仅允许荧光竞争物到达检测模块。选择赭曲霉毒素A(OTA)作为设备开发的模型分析物,使用荧光素标记的OTA作为竞争物。该系统能有效分离颗粒,OTA浓度与竞争反应后溶液中剩余荧光竞争物的量直接相关。这种创新设置能够在短时间内(10分钟)用少量样品进行快速测量,OTA的检测限达到1.2 μg/L。该系统成功应用于准确测定添加了监管相关浓度OTA的小麦粉中的OTA。使用该设备,传统的细胞免疫分析可以无缝转变为用户友好型、小型化的分析方法,以降低成本,直接在需求点用于实验室之外的应用。

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