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智能手机耦合的三层纸基微流控芯片展示了立体毛细驱动流体传输,用于农药的比色检测。

Smartphone-coupled three-layered paper-based microfluidic chips demonstrating stereoscopic capillary-driven fluid transport towards colorimetric detection of pesticides.

机构信息

Guangdong Provincial Key Laboratory On Functional Soft Condensed Matter, School of Materials and Energy, Guangdong University of Technology, Guangdong, 510006, China.

R&D Center, Guangdong Dayuan Oasis Food Safety Technology Co., LTD, Guangzhou, 510530, China.

出版信息

Anal Bioanal Chem. 2022 Feb;414(5):1759-1772. doi: 10.1007/s00216-021-03839-x. Epub 2022 Jan 21.

Abstract

The existence of pesticide residues in the hydrosphere, biosphere, and anthroposphere can cause acute or chronic diseases and deteriorate the environment. Therefore, efficient detection of pesticide residues is of great significance to prevent food poisoning, control food pollution, and protect human lives by recognizing their distribution and concentration. Herein, a novel smartphone-coupled three-layered paper-based microfluidic chip is proposed as a facile platform to detect the pesticides. The stereoscopic capillary-driven fluid transport is enabled by the three-layered microfluidic chip configuration. The detection mechanism is based on the enzyme inhibition reaction and the chromatic reaction. The detection results are obtained by a smartphone and figured out by colorimetric quantitative analysis. Taking advantages of the above merits, we demonstrate the utilization of this smartphone-coupled three-layered paper-based microfluidic chip for the effective analysis of typical pesticides (profenofo and methomyl). The linear ranges of profenofo and methomyl are 0.27-2.1 μmol L and 0.14-1.85 μmol L, respectively. The corresponding limits of detection in the chips are 55 nM and 34 nM, respectively. The paper-based chips are also highly cost-effective with a total cost of 0.082 ¥ per piece. It can be anticipated that this technique will open new avenues for the mass fabrication of paper-based microfluidic chips and provide state-of-the-art methods in the field of analytical chemistry.

摘要

水圈、生物圈和人类圈中农药残留的存在会导致急性或慢性疾病,并恶化环境。因此,高效检测农药残留对于防止食物中毒、控制食物污染以及保护人类生命具有重要意义,因为这样可以识别它们的分布和浓度。在此,提出了一种新型智能手机耦合的三层纸基微流控芯片,作为一种简便的平台来检测农药。立体毛细驱动流体传输是通过三层微流控芯片配置实现的。检测机制基于酶抑制反应和显色反应。通过智能手机获得检测结果,并通过比色定量分析得出结果。利用上述优点,我们展示了该智能手机耦合的三层纸基微流控芯片在典型农药(丙炔氟草胺和灭多威)的有效分析中的应用。丙炔氟草胺和灭多威的线性范围分别为 0.27-2.1 μmol L 和 0.14-1.85 μmol L,相应的芯片检测限分别为 55 nM 和 34 nM。纸基芯片的成本效益也很高,每个芯片的总成本为 0.082 元。可以预期,这项技术将为大规模制造纸基微流控芯片开辟新途径,并为分析化学领域提供最先进的方法。

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