School of Electrical and Electronics Engineering, Chung-Ang University, Seoul 06974, Korea.
Biosensors (Basel). 2021 Sep 28;11(10):358. doi: 10.3390/bios11100358.
Glucose-monitoring sensors are necessary and have been extensively studied to prevent and control health problems caused by diabetes. Spoof localized surface plasmon (LSP) resonance sensors have been investigated for chemical sensing and biosensing. A spoof LSP has similar characteristics to an LSP in the microwave or terahertz frequency range but with certain advantages, such as a high-quality factor and improved sensitivity. In general, microwave spoof LSP resonator-based glucose sensors have been studied. In this study, a millimeter-wave-based spoof surface plasmonic resonator sensor is designed to measure glucose concentrations. The millimeter-wave-based sensor has a smaller chip size and higher sensitivity than microwave-frequency sensors. Therefore, the microfluidic channel was designed to be reusable and able to operate with a small sample volume. For alignment, a polydimethylsiloxane channel was simultaneously fabricated using a multilayer bonding film to attach the upper side of the pattern, which is concentrated in the electromagnetic field. This real-time sensor detects the glucose concentration via changes in the S11 parameter and operates at 28 GHz with an average sensitivity of 0.015669 dB/(mg/dL) within the 0-300 mg/dL range. The minimum detectable concentration and the distinguishable signal are 1 mg/dL and 0.015669 dB, respectively, from a 3.4 μL sample. The reusability and reproducibility were assessed through replicates.
葡萄糖监测传感器对于预防和控制糖尿病引起的健康问题是必要的,并且已经进行了广泛的研究。赝局域表面等离激元(LSP)共振传感器已被用于化学传感和生物传感研究。赝局域表面等离激元具有类似于微波或太赫兹频率范围内的局域表面等离激元的相似特性,但具有某些优势,例如高品质因数和提高的灵敏度。通常,已经研究了基于微波赝局域表面等离激元谐振器的葡萄糖传感器。在这项研究中,设计了一种基于毫米波的赝表面等离子体谐振器传感器来测量葡萄糖浓度。基于毫米波的传感器比微波频率传感器具有更小的芯片尺寸和更高的灵敏度。因此,微流道被设计为可重复使用,并且能够处理小体积的样本。为了进行对准,使用多层键合膜同时制造聚二甲基硅氧烷通道,以将图案的上侧附着到集中电磁场的位置。这种实时传感器通过 S11 参数的变化来检测葡萄糖浓度,并在 28GHz 下工作,在 0-300mg/dL 范围内的平均灵敏度为 0.015669dB/(mg/dL)。最小可检测浓度和可区分信号分别为 1mg/dL 和 0.015669dB,来自 3.4μL 样本。通过重复实验评估了可重复性和再现性。