North China University of Science and Technology, College of Electrical Engineering, Tangshan, 063210, P. R. China.
Chempluschem. 2023 Sep;88(9):e202300262. doi: 10.1002/cplu.202300262.
In recent years, the development of electrochemical biosensors for uric acid has made great achievements. Firstly, uric acid electrochemical biosensors were classified according to their reaction mechanism. Then, the reaction mechanism of the uric acid sensor and the application of nano-modified materials were deeply analyzed from the perspective of non-enzyme and enzymes. In this paper, the catalytic oxidation capacity, enzyme adsorption effect, conductivity, robustness, detection range, and detection limit of uric acid sensors were discussed and compared. Finally, the advantages of acid-sensitive electrochemical biosensors were summarized, and the constructive recommendations were proposed for improving the deficiencies of acid biosensors. The potential for further development in this area was also discussed.
近年来,尿酸电化学生物传感器的发展取得了巨大成就。首先,根据反应机制对尿酸电化学生物传感器进行了分类。然后,从非酶和酶的角度深入分析了尿酸传感器的反应机制和纳米改性材料的应用。本文讨论并比较了尿酸传感器的催化氧化能力、酶吸附效果、电导率、稳健性、检测范围和检测限。最后,总结了酸性敏感电化学生物传感器的优点,并针对酸性生物传感器的不足之处提出了改进建议。还讨论了该领域的进一步发展潜力。