电化学
果胶
泌尿系统
肌酐
电化学气体传感器
材料科学
酶
化学
医学
生物化学
内科学
电极
物理化学
作者
Hongming Hou,Futeng Li,Shuanglan Lin,Zhimin Li,Xianglong Li
标识
DOI:10.1016/j.microc.2025.112783
摘要
A non-enzymatic electrochemical sensor prepared using Pectin-Cu-modified screen-printed carbon electrodes was utilized to detect creatinine levels in human urine. The sensor is highly reproducible, selective, and cost-effective, and it can be stably stored for a long period. • A highly reproducible and low-cost electrochemical sensor was developed. • The ion exchange between pectin and Cu 2+ assists in the uniform deposition of Cu. • This sensing is based on the formation of soluble Cu 2+ -creatinine complexes. • This sensor was successfully tested in diluted urine. • This sensor could be a tool to detect urinary creatinine in a clinical setting. Non-invasive creatinine monitoring is an attractive alternative to blood sampling for the assessment and management of chronic kidney disease. For this purpose, a non-enzymatic electrochemical sensor was introduced for non-invasive measurement of urinary creatinine levels. This sensor was prepared by utilizing ion exchange between pectin carboxyl groups and Cu 2+ to promote uniform deposition of Cu on screen-printed carbon electrode (denoted as Pectin-Cu/SPCE). This promising pectin-assisted Cu electrodeposition method prepares a sensor with a low detection limit of 9.6 µM for creatinine and a detection range of 20–1000 µM. Furthermore, the improved sensitivity of this sensor is attributed to the rapid movement of Cu 2+ and Cu 2+ -creatinine complexes on the electrode surface, which enhances the oxidation reaction. Also, this sensor demonstrates outstanding inter-batch reproducibility (n = 6) and good storage stability for 21 days. Moreover, this sensor can directly detect creatinine in diluted human urine without the need for complex pre-processing. The results were compared with the enzymatic method, and the accuracy was between 92.32 % and 97.87 %. As a result, this Pectin-Cu/SPCE-based non-enzymatic electrochemical sensor shows potential as a non-invasive urinary creatinine detection tool in a clinical setting.
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