Department of Chemistry, University of Pavia, Via Taramelli n.12, 27100 Pavia, Italy.
Department of Engineering, University of Campania Luigi Vanvitelli, Via Roma n.29, 81031 Aversa, Italy.
Sensors (Basel). 2022 Oct 28;22(21):8289. doi: 10.3390/s22218289.
An innovative optical-chemical sensor has been used to detect the 2-furaldehyde (2-FAL) in milk. The proposed sensing approach exploits the refractive index changing in a microstructured chip based on a plastic optical fiber (POF) with orthogonal micro-holes containing a specific molecularly imprinted polymer (MIP). This POF-MIP chemical chip modifies the surface plasmon resonance (SPR) phenomena excited in another sensor chip realized in POFs (SPR-POF) and connected in series. The proposed sensor configuration exploits MIP receptors avoiding any modification of the gold film of the SPR platform. This work reports the performance, particularly the high sensitivity and low detection limit, in complex matrices such as buffalo milk fortified with 2-FAL and in different commercial kinds of cow milk thermally treated for pasteurization. The measurements were carried out in about ten minutes by dropping the solution under-test on the planar D-shaped POF surface of the chemical chip. In contrast, on the gold surface of the SPR-POF platform, a water drop is always placed to excite the SPR phenomenon, which is modulated by the chemical chip via MIP-2-FAL binding. Furthermore, the experimental results demonstrated the pros and cons of the proposed sensor system. Thanks to the high sensitivity of the sensor system, the detection of 2-FAL in the diluted milk sample (1:50) was achieved. The dilution is required to reduce the interferent effect of the complex matrix.
一种创新的光电化学传感器已被用于检测牛奶中的 2-糠醛(2-FAL)。所提出的传感方法利用基于具有正交微孔的塑料光纤(POF)的微结构芯片中的折射率变化,微孔中含有特定的分子印迹聚合物(MIP)。这种 POF-MIP 化学芯片改变了在另一个传感器芯片中激发的表面等离子体共振(SPR)现象,该传感器芯片由 POFs(SPR-POF)实现并串联连接。所提出的传感器配置利用 MIP 受体,避免了对 SPR 平台的金膜进行任何修改。这项工作报告了在复杂基质(如添加 2-FAL 的水牛乳)和不同热处理的商业牛乳中的性能,特别是高灵敏度和低检测限。通过将待测试溶液滴在化学芯片的平面 D 形 POF 表面上,大约十分钟即可完成测量。相比之下,在 SPR-POF 平台的金表面上,总是放置一滴水以激发 SPR 现象,该现象通过化学芯片通过 MIP-2-FAL 结合进行调制。此外,实验结果证明了所提出的传感器系统的优缺点。由于传感器系统的高灵敏度,可以在稀释的牛奶样品(1:50)中检测到 2-FAL。需要进行稀释以减少复杂基质的干扰影响。