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基于RNA病毒医学检测的双技术融合生物传感器芯片研究

Research on Dual-Technology Fusion Biosensor Chip Based on RNA Virus Medical Detection.

作者信息

Zhu Jin, Xie Yushan

机构信息

Ocean College, Jiangsu University of Science and Technology, Zhenjiang 212003, China.

College of Electronic Information Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 211100, China.

出版信息

Micromachines (Basel). 2022 Sep 14;13(9):1523. doi: 10.3390/mi13091523.

Abstract

In recent years, the emergence of COVID-19 and other epidemics caused by RNA(ribonucleic acid)-type genetic viruses has aroused the close attention of governments around the world on emergency response to public safety and health emergencies. In this paper, an electrodeless biosensing detection chip for RNA virus medical detection is designed using quartz crystal microbalance technology and local surface plasmon resonance technology. The plasmonic resonance characteristic in the nanostructures of gold nanorods-quartz substrates with different parameters and the surface potential distribution of the quartz crystal microbalance sensing chip were studied by COMSOL finite element simulation software. The results show that the arrangement structure and spacing of gold nanorod dimers greatly affect the local surface plasmon resonance of nanorods, which in turn affects the detection results of biomolecules. Moreover, high concentrations of "hot spots" are distributed between both ends and the gap of the gold nanorod dimer, which reflects the strong hybridization of the multiple resonance modes of the nanoparticles. In addition, by simulating and calculating the surface potential distribution of the electrode area and non-electrode area of the biosensor chip, it was found that the biosensor chip with these two areas can enhance the piezoelectric effect of the quartz chip. Under the same simulation conditions, the biochip with a completely electrodeless structure showed a better sensing performance. The sensor chip combining QCM and LSPR can reduce the influence of the metal electrode on the quartz wafer to improve the sensitivity and accuracy of detection. Considering the significant influence of the gold nanorod dimer plasma resonance mode and the significant advantages of the electrodeless biosensor chip, an electrodeless biosensor combining these two technologies is proposed for RNA virus detection and screening, which has potential applications in biomolecular measurement and other related fields.

摘要

近年来,新型冠状病毒肺炎及其他由核糖核酸(RNA)型基因病毒引起的流行病的出现,引起了世界各国政府对公共安全和卫生突发事件应急响应的密切关注。本文利用石英晶体微天平技术和局域表面等离子体共振技术,设计了一种用于RNA病毒医学检测的无电极生物传感检测芯片。采用COMSOL有限元模拟软件研究了不同参数的金纳米棒-石英基底纳米结构中的等离子体共振特性以及石英晶体微天平传感芯片的表面电位分布。结果表明,金纳米棒二聚体的排列结构和间距对纳米棒的局域表面等离子体共振有很大影响,进而影响生物分子的检测结果。此外,高浓度的“热点”分布在金纳米棒二聚体的两端和间隙之间,这反映了纳米颗粒多重共振模式的强烈杂化。另外,通过对生物传感器芯片电极区和非电极区的表面电位分布进行模拟计算,发现具有这两个区域的生物传感器芯片可以增强石英芯片的压电效应。在相同的模拟条件下,完全无电极结构的生物芯片表现出更好的传感性能。结合石英晶体微天平(QCM)和局域表面等离子体共振(LSPR)的传感器芯片可以减少金属电极对石英晶片的影响,提高检测的灵敏度和准确性。考虑到金纳米棒二聚体等离子体共振模式的显著影响和无电极生物传感器芯片的显著优势,提出了一种结合这两种技术的无电极生物传感器用于RNA病毒检测和筛选,在生物分子测量等相关领域具有潜在应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1261/9506488/6685151edcf2/micromachines-13-01523-g001.jpg

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