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基于优化的集成无源器件制造工艺的可重复使用、非侵入式、超快速射频生物传感器,用于定量检测血糖水平。

Reusable, Non-Invasive, and Ultrafast Radio Frequency Biosensor Based on Optimized Integrated Passive Device Fabrication Process for Quantitative Detection of Glucose Levels.

机构信息

School of Information Science and Engineering, University of Jinan, Jinan 250022, China.

Shandong Provincial Key Laboratory of Network Based Intelligent Computing, University of Jinan, Jinan 250022, China.

出版信息

Sensors (Basel). 2020 Mar 11;20(6):1565. doi: 10.3390/s20061565.

Abstract

The increase in the number of people suffering diabetes has been the driving force behind the development of glucose sensors to overcome the current testing shortcomings. In this work, a reusable, non-invasive and ultrafast radio frequency biosensor based on optimized integrated passive device fabrication process for quantitative detection of glucose level was developed. With the aid of the novel biosensor design with hammer-shaped capacitors for carrying out detection, both the resonance frequency and magnitude of reflection coefficient can be applied to map the different glucose levels. Meanwhile, the corresponding fabrication process was developed, providing an approach for achieving quantitative detection and a structure without metal-insulator-metal type capacitor that realizes low cost and high reliability. To enhance the sensitivity of biosensor, a 3-min dry etching treatment based on chlorine/argon-based plasma was implemented for realizing hydrophilicity of capacitor surface to ensure that the biosensor can be touched rapidly with glucose. Based on above implementation, a non-invasive biosensor having an ultrafast response time of superior to 0.85 s, ultralow LOD of 8.01 mg/dL and excellent reusability verified through five sets of measurements are realized. The proposed approaches are not limited the development of a stable and accurate platform for the detection of glucose levels but also presents a scheme toward the detection of glucose levels in human serum.

摘要

糖尿病患者人数的增加是推动葡萄糖传感器发展的动力,以克服当前检测的不足。在这项工作中,开发了一种基于优化集成无源器件制造工艺的可重复使用、非侵入式和超快速射频生物传感器,用于定量检测葡萄糖水平。借助具有用于进行检测的 Hammer 形状电容器的新型生物传感器设计,反射系数的共振频率和幅度都可用于绘制不同的葡萄糖水平。同时,开发了相应的制造工艺,提供了一种实现定量检测的方法和一种没有金属-绝缘体-金属型电容器的结构,实现了低成本和高可靠性。为了提高生物传感器的灵敏度,实施了基于氯/氩等离子体的 3 分钟干法刻蚀处理,以实现电容器表面的亲水性,确保生物传感器可以快速与葡萄糖接触。基于上述实施,实现了超快速响应时间优于 0.85 s、超低检测限 8.01 mg/dL 和出色的可重复性的非侵入式生物传感器,通过五组测量进行了验证。所提出的方法不仅限于开发稳定准确的葡萄糖检测平台,而且还提出了一种用于检测人血清中葡萄糖水平的方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f28/7146331/3f29dcbbcd5b/sensors-20-01565-g001.jpg

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