Innovative Global Program, Shibaura Institute of Technology, Tokyo 135-8548, Japan.
Department of Applied Chemistry, Shibaura Institute of Technology, Tokyo 135-8548, Japan.
Molecules. 2022 Apr 11;27(8):2456. doi: 10.3390/molecules27082456.
This work focuses on a carbon-based imprinted polymer composite, employed as a molecular recognition and sensing interface in fabricating a disposable electrochemical sensor. The carbon-paste electrode was made of a molecularly imprinted polymer comprising a copolymer of methacrylic acid as the functional monomer and blended crosslinking monomers of ,'-methylenebisacrylamide, and ethylene glycol dimethacrylate, with theophylline as the template. The analytical properties of the proposed theophylline sensor were investigated, and the findings revealed an increase in differential pulse voltammetric current compared to the non-imprinted electrode. Under optimized conditions, the sensor has shown high sensitivity, high selectivity, lower detection limit (2.5 µg/mL), and satisfactory long-term stability. Further, the sensor was tested in whole bovine blood and validated without any matrix effect and cross-reactivity. Additionally, chronoamperometry of the sensor chip supported a rapid determination of THO with a short response time of 3 s. This carbon-paste electrode is highly specific for theophylline and may be applied as a drug sensor for clinical use.
这项工作专注于一种基于碳的印迹聚合物复合材料,作为分子识别和传感界面,用于制造一次性电化学传感器。碳糊电极由分子印迹聚合物组成,该聚合物包含甲基丙烯酸作为功能单体和混合交联单体,'-亚甲基双丙烯酰胺和乙二醇二甲基丙烯酸酯,以茶碱为模板。研究了所提出的茶碱传感器的分析特性,结果表明与非印迹电极相比,差分脉冲伏安电流增加。在优化条件下,该传感器具有高灵敏度、高选择性、更低的检测限(2.5 µg/mL)和令人满意的长期稳定性。此外,该传感器在全牛血中进行了测试,没有任何基质效应和交叉反应。此外,传感器芯片的计时安培法支持快速测定 THO,响应时间短至 3 秒。这种碳糊电极对茶碱具有高度特异性,可作为临床用药物传感器使用。