Zidarič Tanja, Majer David, Maver Tina, Finšgar Matjaž, Maver Uroš
University of Maribor, Faculty of Medicine, Institute of Biomedical Sciences, Taborska ulica 8, 2000 Maribor, Slovenia.
University of Maribor, Faculty of Chemistry and Chemical Engineering, Smetanova ulica 17, 2000 Maribor, Slovenia.
Analyst. 2023 Feb 27;148(5):1102-1115. doi: 10.1039/d2an02025d.
An electrochemical sensor for the detection of insulin in a single drop (50 μL) was developed based on the concept of molecularly imprinted polymers (MIP). The synthetic MIP receptors were assembled on a screen-printed carbon electrode (SPCE) by the electropolymerization of pyrrole (Py) in the presence of insulin (the protein template) using cyclic voltammetry. After electropolymerization, insulin was removed from the formed polypyrrole (Ppy) matrix to create imprinting cavities for the subsequent analysis of the insulin analyte in test samples. The surface characterization, before and after each electrosynthesis step of the MIP sensors, was performed using atomic force microscopy, scanning electron microscopy, and energy-dispersive X-ray spectroscopy. The performance of the developed MIP-SPCE sensor was evaluated using a single drop of solution containing KFe(CN) and the square-wave voltammetry technique. The MIP-SPCE showed a linear concentration range of 20.0-70.0 pM ( = 0.9991), a limit of detection of 1.9 pM, and a limit of quantification of 6.2 pM. The rapid response time to the protein target and the portability of the developed sensor, which is considered a disposable MIP-based system, make this MIP-SPCE sensor a promising candidate for point-of-care applications. In addition, the MIP-SPCE sensor was successfully used to detect insulin in a pharmaceutical sample. The sensor was deemed to be accurate (the average recovery was 108.46%) and precise (the relative standard deviation was 7.23%).
基于分子印迹聚合物(MIP)的概念,开发了一种用于检测单滴(50 μL)胰岛素的电化学传感器。通过在胰岛素(蛋白质模板)存在下,利用循环伏安法对吡咯(Py)进行电聚合,将合成的MIP受体组装在丝网印刷碳电极(SPCE)上。电聚合后,将胰岛素从形成的聚吡咯(Ppy)基质中去除,以创建印迹腔,用于后续对测试样品中胰岛素分析物的检测。使用原子力显微镜、扫描电子显微镜和能量色散X射线光谱对MIP传感器每个电合成步骤前后的表面进行表征。使用含有铁氰化钾的单滴溶液和方波伏安法技术评估所开发的MIP-SPCE传感器的性能。MIP-SPCE的线性浓度范围为20.0 - 70.0 pM( = 0.9991),检测限为1.9 pM,定量限为6.2 pM。对蛋白质靶标的快速响应时间以及所开发传感器的便携性(该传感器被认为是基于MIP的一次性系统),使得这种MIP-SPCE传感器成为即时检测应用的有前途的候选者。此外,MIP-SPCE传感器成功用于检测药物样品中的胰岛素。该传感器被认为是准确的(平均回收率为108.46%)和精确的(相对标准偏差为7.23%)。