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一种用于全血中血浆分离和可卡因荧光检测的一体化微流控装置。

An All-in-One Microfluidic Device for Blood Plasma Separation and Fluorescence Detection of Cocaine in Whole Blood.

作者信息

Wang Anyang, Hang Yingjie, Wang Jiacheng, Tan Weirui, Wu Nianqiang

机构信息

Department of Chemical Engineering, University of Massachusetts Amherst, Amherst, Massachusetts 01003-9303, United States.

出版信息

Anal Chem. 2025 Jul 15;97(27):14808-14814. doi: 10.1021/acs.analchem.5c02530. Epub 2025 Jul 3.

Abstract

Blood drug testing can provide real-time data to assess the recent consumption of illicit drugs. Microfluidic devices have great promise in rapid finger-prick blood tests at point-of-care settings. However, the fabrication of an integrated microfluidic device for whole blood testing remains a challenge because the separation performance is sensitive to modification in downstream product microchambers. In this work, a hydrodynamic force-based blood plasma separation unit has been developed to regulate the blood plasma separation efficiency and yield after it is integrated with the waste outlet, the connection, and detection zones in a microfluidic device. After the plasma is separated from blood by this microfluidic separation unit, it is driven to an aptamer-based detection zone downstream. As a result, this integrated fluorescence microfluidic device can directly detect the cocaine metabolite, benzoylecgonine (BEC), in a drop of whole blood sample with readout by a hand-held fluorescence reader, achieving a limit of detection (LOD) of 0.62 μg/mL. This integrated all-in-one microfluidic device can serve as a general detection platform for the measurement of various analytes in finger-prick whole blood samples.

摘要

血液药物检测可以提供实时数据,以评估近期非法药物的使用情况。微流控设备在即时护理环境下进行快速指尖采血检测方面具有巨大潜力。然而,制造用于全血检测的集成微流控设备仍然是一项挑战,因为分离性能对下游产品微腔中的修饰很敏感。在这项工作中,已经开发了一种基于流体动力的血浆分离单元,以便在与微流控设备中的废物出口、连接区和检测区集成后,调节血浆分离效率和产量。通过这种微流控分离单元将血浆从血液中分离出来后,它被驱动到下游基于适配体的检测区。结果,这种集成荧光微流控设备可以直接检测一滴全血样本中的可卡因代谢物苯甲酰芽子碱(BEC),并通过手持式荧光读数器进行读数,检测限(LOD)达到0.62μg/mL。这种集成的一体化微流控设备可以作为一个通用的检测平台,用于测量指尖全血样本中的各种分析物。

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