College of Micro and Nano Technology, Qingdao University, Qingdao, 266071, China.
College of Materials Science and Engineering, Qingdao University, Qingdao, 266071, China.
Sci Rep. 2022 Sep 24;12(1):15961. doi: 10.1038/s41598-022-20285-6.
This paper presents a microwave microfluidic biosensor for monitoring blood glucose levels. The glucose sensor is a triple ring microstrip patch antenna integrated with a biomimetic microfluidic device capable of measuring a fixed volume of glucose solution. The sensor was utilized to detect 50-500 mg/dL glucose solutions. The interaction of the glucose solution with the electromagnetic field on the patch's surface influences both the resonance frequency and the magnitude of reflection coefficient. The results indicate that the microfluidic device can reduce experimental error and enhance the correlation between glucose concentration, resonant frequency, and reflection coefficient. Finally, the microfluidic sensor had a sensitivity of 0.25 MHz/(mg/dL), a detection limit as low as 7.7 mg/dL, and correlation coefficients of resonance frequency and reflection coefficient with a glucose concentration of 0.996 and 0.984, respectively. The experiment on the sensor's stability verifies the sensor's excellent stability and rapid response (~ 150 ms). Consequently, the device can be used to differentiate the concentration of glucose solutions, as well as to detect blood glucose levels at an early stage.
本文提出了一种用于监测血糖水平的微波微流控生物传感器。该葡萄糖传感器是一种三重环形微带贴片天线,与仿生微流控装置集成在一起,能够测量固定体积的葡萄糖溶液。该传感器用于检测 50-500mg/dL 的葡萄糖溶液。葡萄糖溶液与贴片表面电磁场的相互作用会影响谐振频率和反射系数的幅度。结果表明,微流控装置可以减小实验误差,并增强葡萄糖浓度、谐振频率和反射系数之间的相关性。最后,微流控传感器的灵敏度为 0.25MHz/(mg/dL),检测限低至 7.7mg/dL,与葡萄糖浓度的相关系数分别为 0.996 和 0.984。对传感器稳定性的实验验证了传感器的优良稳定性和快速响应(~150ms)。因此,该装置可用于区分葡萄糖溶液的浓度,以及早期检测血糖水平。