University of Tunis El Manar, Tunis Faculty of Science, Sensors and Biosensors Group, Laboratory of Analytical Chemistry and Electrochemistry, 2092 Tunis El Manar, Tunisia.
BioMark sensor research/ISEP, School of Engineering, Polytechnic Institute, 4249-015 Porto, Portugal; CEB, Centre of Biological Engineering, Minho University, 4710-057 Braga, Portugal; LABBELS - Associate Laboratory, Guimarães, 4710-057 Braga, Portugal.
J Pharm Biomed Anal. 2023 Mar 20;226:115251. doi: 10.1016/j.jpba.2023.115251. Epub 2023 Jan 13.
Tau protein is a promising biomarker for early diagnosis of Alzheimer's disease. Therefore, there is an urgent need to develop a simple and effective method for its detection. To this end, an innovative sensing device was developed using a carbon screen-printed electrode (C-SPE) decorated with graphene oxide/Prussian Blue nanocubes (GO/PBNCs) for the selective and sensitive determination of Tau-441 protein. The molecular imprinting polymer (MIP) was built on the GO/PBNCs/C-SPE by electropolymerizing 3-aminophenol (3-AMP) in the presence of the target protein using chronoamperometry, and the template was subsequently removed from the polymer matrix with oxalic acid. In parallel, a non-imprinted material (NIP) was also prepared in the absence of the target for comparison purposes. Scanning electron microscopy and transmission electron microscopy, were used to study the morphology of the modified electrode and electrochemical techniques were used to monitor the stepwise assembly of the sensor. Under optimized conditions, the sensing platform exhibited a linear range within 1.09 and 2.18 nmol/L and a detection limit of 0.01 pmol/L in spiked phosphate buffer solution (PBS). The MIP sensor showed minimal interference with uric acid and bovine albumin. The simplicity of production, affordable cost and promising performance make this sensor a potential strategic sensing platform for the detection of chemical and biological molecules.
tau 蛋白是阿尔茨海默病早期诊断的有前途的生物标志物。因此,迫切需要开发一种简单有效的 tau 蛋白检测方法。为此,开发了一种创新的传感装置,该装置使用涂有氧化石墨烯/普鲁士蓝纳米立方体(GO/PBNCs)的碳丝网印刷电极(C-SPE)来选择性和灵敏地测定 Tau-441 蛋白。分子印迹聚合物(MIP)是通过在存在目标蛋白的情况下使用计时安培法在 GO/PBNCs/C-SPE 上电聚合 3-氨基酚(3-AMP)构建的,然后用草酸从聚合物基质中去除模板。同时,为了比较,还在没有目标蛋白的情况下制备了非印迹材料(NIP)。扫描电子显微镜和透射电子显微镜用于研究修饰电极的形态,电化学技术用于监测传感器的逐步组装。在优化条件下,传感平台在加标磷酸盐缓冲溶液(PBS)中显示出 1.09 至 2.18 nmol/L 的线性范围和 0.01 pmol/L 的检测限。MIP 传感器对尿酸和牛白蛋白的干扰最小。该传感器具有制作简单、成本低廉和性能良好的特点,使其成为检测化学和生物分子的潜在战略传感平台。