College of Food Science and Light Industry, Nanjing Tech University, Puzhu South Street No. 30, Nanjing, 211816, Jiangsu, China.
Anal Bioanal Chem. 2021 Jan;413(2):389-401. doi: 10.1007/s00216-020-03006-8. Epub 2020 Nov 4.
Because of its widespread distribution in the environment, bisphenol A (BPA) has become a global concern as an endocrine disruptor and a threat to human health through the food chain. Thus an efficient determination method is urgently needed for monitoring the levels of BPA. Herein, a novel electrochemical technique for the detection of BPA was performed by synchronous extraction and pre-concentration of BPA onto magnetic molecularly imprinted polymer (BMMIP), with subsequent readout on a magneto-actuated glassy carbon electrode (MGCE) by differential pulse voltammetry. Compared to the current methods of BPA determination, this BMMIP-based electrochemical sensor (BMMIPs@MGCE) not only simplifies the sample handling procedures substantially, without filtration, centrifugation, or other complex operations, but also can be easily renewed by a controllable magnetic field. As a sensor component, the core-shell BMMIPs exhibited excellent binding capacity (Q = 82.5 mg g), short adsorption equilibrium time (30 s), and outstanding selectivity (k' = 7.239) towards BPA, as well as stability and recyclability. Importantly, the BMMIPs@MGCE sensor was successfully applied for the on-site monitoring and rapid detection of BPA in complicated real-world specimens, with good recoveries (81.31-119.77%) and a low limit of detection (0.133 μmol L). Therefore, the stable and low-cost BMMIPs@MGCE sensor provides a new approach for the rapid determination of BPA in the field of environmental control and food safety. Graphical abstract.
由于双酚 A(BPA)在环境中广泛分布,因此作为一种内分泌干扰物,通过食物链对人类健康构成威胁,已成为全球关注的焦点。因此,迫切需要一种有效的测定方法来监测 BPA 的水平。在此,通过将 BPA 同步萃取和预浓缩到磁性分子印迹聚合物(BMMIP)上,然后在磁驱动玻碳电极(MGCE)上通过差分脉冲伏安法进行读出,从而实现了一种用于检测 BPA 的新型电化学技术。与目前的 BPA 测定方法相比,基于 BMMIP 的电化学传感器(BMMIPs@MGCE)不仅大大简化了样品处理程序,无需过滤、离心或其他复杂操作,而且还可以通过可控磁场轻松更新。作为传感器组件,核壳 BMMIP 对 BPA 表现出优异的结合能力(Q = 82.5 mg g)、短的吸附平衡时间(30 s)和出色的选择性(k' = 7.239),以及稳定性和可重复性。重要的是,BMMIPs@MGCE 传感器成功应用于复杂实际样品中 BPA 的现场监测和快速检测,回收率良好(81.31-119.77%),检测限低(0.133 μmol L)。因此,稳定且低成本的 BMMIPs@MGCE 传感器为环境控制和食品安全领域中 BPA 的快速测定提供了一种新方法。