Food Science Program, Division of Food System & Bioengineering, University of Missouri, Columbia, MO, USA.
Institute of Materials Science, University of Connecticut, Mansfield, CT, USA.
Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2021 Apr;38(4):646-658. doi: 10.1080/19440049.2021.1881624. Epub 2021 Mar 10.
This study developed an in-field analytical technique for food samples by integrating filtration into a surface-enhanced Raman spectroscopy (SERS) microchip. This microchip embedded a filter membrane in the chip inlet to eliminate interfering particulates and enrich target analytes. The design and geometry of the channel were optimised by finite-elemental method (FEM) to tailor variations of flow velocity (within 0-24 μL/s) and facilitate efficient mixing of the filtrate with nanoparticles in two steps. Four pesticides (thiabendazole, thiram, endosulfan, and malathion) were successfully detected either individually or as a mixture in strawberries using this sensor. Strong Raman signals were obtained for the four studied pesticides and their major peaks were clearly observable even at a low concentration of 5 µg/kg. Limits of detection of four pesticides in strawberry extract were in the range of 44-88 μg/kg, showing good sensitivity of the sensor to the target analytes. High selectivity of the sensor was also proved by successful detection of each individual pesticide as a mixture in strawberry matrices. High recoveries (90-122%) were achieved for the four pesticides in the strawberry extract. This sensor is the first filter-based SERS microchip for identification and quantification of multiple target analytes in complex food samples.
本研究通过将过滤集成到表面增强拉曼光谱(SERS)微芯片中,开发了一种用于食品样品的现场分析技术。该微芯片在芯片入口处嵌入了一个滤膜,以消除干扰颗粒并浓缩目标分析物。通过有限元方法(FEM)对通道的设计和几何形状进行了优化,以调整流速(0-24 μL/s 内)的变化,并分两步促进滤出物与纳米颗粒的有效混合。使用该传感器成功地单独或混合检测了草莓中的四种农药(噻菌灵、福美双、硫丹和马拉硫磷)。四种研究农药均获得了强拉曼信号,即使在 5μg/kg 的低浓度下,其主要峰也清晰可见。四种农药在草莓提取物中的检测限在 44-88μg/kg 范围内,表明传感器对目标分析物具有良好的灵敏度。该传感器还通过成功检测草莓基质中每种单独农药的混合物证明了其高选择性。四种农药在草莓提取物中的回收率均在 90-122%之间。该传感器是第一个用于识别和定量复杂食品样品中多种目标分析物的基于过滤的 SERS 微芯片。