Research Center for Materials Science and Opti-Electronic Technology, College of Materials Science and Opti-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049, China.
Department of Biomedical Engineering, I-Shou University, Kaohsiung City 82445, Taiwan.
Sensors (Basel). 2020 Dec 4;20(23):6925. doi: 10.3390/s20236925.
In recent years, with the rise of global diabetes, a growing number of subjects are suffering from pain and infections caused by the invasive nature of mainstream commercial glucose meters. Non-invasive blood glucose monitoring technology has become an international research topic and a new method which could bring relief to a vast number of patients. This paper reviews the research progress and major challenges of non-invasive blood glucose detection technology in recent years, and divides it into three categories: optics, microwave and electrochemistry, based on the detection principle. The technology covers medical, materials, optics, electromagnetic wave, chemistry, biology, computational science and other related fields. The advantages and limitations of non-invasive and invasive technologies as well as electrochemistry and optics in non-invasives are compared horizontally in this paper. In addition, the current research achievements and limitations of non-invasive electrochemical glucose sensing systems in continuous monitoring, point-of-care and clinical settings are highlighted, so as to discuss the development tendency in future research. With the rapid development of wearable technology and transdermal biosensors, non-invasive blood glucose monitoring will become more efficient, affordable, robust, and more competitive on the market.
近年来,随着全球糖尿病患者的增加,越来越多的患者因主流商业血糖仪的侵入性而遭受疼痛和感染。非侵入式血糖监测技术已成为国际研究课题和一种新方法,可为数以百万计的患者带来缓解。本文综述了近年来非侵入式血糖检测技术的研究进展和主要挑战,并根据检测原理将其分为光学、微波和电化学三类。该技术涵盖了医学、材料、光学、电磁波、化学、生物学、计算科学等相关领域。本文还横向比较了侵入式和非侵入式、电化学和光学在非侵入式中的优缺点。此外,本文还重点介绍了非侵入式电化学葡萄糖传感系统在连续监测、即时检测和临床环境中的当前研究成果和局限性,以探讨未来研究的发展趋势。随着可穿戴技术和经皮生物传感器的快速发展,非侵入式血糖监测将变得更加高效、经济实惠、稳健,并且在市场上更具竞争力。