Cheng Liangliang, Guo Ruifang, Zheng Wanlu, He Kunyang, Geng Yaozhong, Liu Lijun, Ai Qing, He Yu, Zhang Ya-Nan, Zhao Yong
College of Information Science and Engineering, Northeastern University, Shenyang, 110819, China.
Key Laboratory of Bioresource Research and Development of Liaoning Province, College of Life and Health Sciences, National Frontiers Science Center for Industrial Intelligence and Systems Optimization, Northeastern University, Shenyang, 110819, China.
Biosens Bioelectron. 2025 Mar 1;271:117076. doi: 10.1016/j.bios.2024.117076. Epub 2024 Dec 17.
A novel dual-parameter optical fiber biosensor based on surface plasmon resonance (SPR) for simultaneous measurement of urea and uric acid concentrations is proposed in this paper. Based on the principle of positive and negative electric combination, ZnO nanoparticles is selected as the matrix for immobilizing urease and uricase with selective recognition ability, which can also be used as a sensitizing material to increase the refractive index detection sensitivity of SPR by 22%. Then, Nafion ion exchange membrane was introduced to wrap the urea sensing area to avoid crosstalk caused by the overlap of adjacent sensing areas. The difference in the number of enzymes loaded on ZnO nanoparticles was used to meet the refractive index gap for forming dual SPR detection channels. Experiments indicate that the sensitivity of urea detection is 1.6 nm/mM in the range of 1-9 mM urea concentration. The detection sensitivity of uric acid is 36 nm/mM in the concentration range of 50-500 μM. The detection ability of the sensor to actual biological samples was verified by serum samples, which proved that the sensor has practical application potential and reliable selectivity. It can provide a new idea for the research and development of multi-parameter optical fiber biosensors.
本文提出了一种基于表面等离子体共振(SPR)的新型双参数光纤生物传感器,用于同时测量尿素和尿酸浓度。基于正负电荷结合原理,选择ZnO纳米颗粒作为固定具有选择性识别能力的脲酶和尿酸酶的基质,其还可作为增敏材料将SPR的折射率检测灵敏度提高22%。然后,引入Nafion离子交换膜包裹尿素传感区域,以避免相邻传感区域重叠引起的串扰。利用负载在ZnO纳米颗粒上的酶数量差异来满足形成双SPR检测通道的折射率差。实验表明,在尿素浓度为1-9 mM范围内,尿素检测灵敏度为1.6 nm/mM。在尿酸浓度为50-500 μM范围内,尿酸检测灵敏度为36 nm/mM。通过血清样本验证了该传感器对实际生物样品的检测能力,证明该传感器具有实际应用潜力和可靠的选择性。它可为多参数光纤生物传感器的研发提供新思路。