Song Qiuye, Li Qianmin, Yan Jiadong, Song Yonggui
The Affiliated Zhangjiagang Hospital of Soochow University Zhangjiagang 215600 Jiangsu People's Republic of China
Key Laboratory of Depression Animal Model Based on TCM Syndrome, Jiangxi Administration of Traditional Chinese Medicine, Key Laboratory of TCM for Prevention and Treatment of Brain Diseases with Cognitive Dysfunction, Jiangxi Province, Jiangxi University of Chinese Medicine 1688 Meiling Road Nanchang 330006 China.
RSC Adv. 2022 Jun 15;12(28):17715-17739. doi: 10.1039/d2ra01273a. eCollection 2022 Jun 14.
For a long time, people have been eager to realize continuous real-time online monitoring of biological compounds. Fortunately, electrochemical biosensor technology has greatly promoted the development of biological compound detection. This article summarizes the existing electrochemical detection technologies into two categories: microdialysis (MD) and microelectrode (ME). Then we summarized and discussed the electrode surface time, pollution resistance, linearity and the number of instances of simultaneous detection and analysis, the composition and characteristics of the sensor, and finally, we also predicted and prospected the development of electrochemical technology and sensors .
长期以来,人们一直渴望实现生物化合物的连续实时在线监测。幸运的是,电化学生物传感器技术极大地推动了生物化合物检测的发展。本文将现有的电化学检测技术归纳为两类:微透析(MD)和微电极(ME)。然后,我们总结并讨论了电极表面时间、抗污染性、线性以及同时检测和分析的实例数量、传感器的组成和特性,最后,我们还对电化学技术和传感器的发展进行了预测和展望。