College of Food Science and Technology, Shanghai Ocean University, Shanghai, 201306, China.
College of Food Science and Technology, Shanghai Ocean University, Shanghai, 201306, China.
Talanta. 2021 May 1;226:122135. doi: 10.1016/j.talanta.2021.122135. Epub 2021 Jan 22.
The rapid and sensitive detection of pathogenic bacteria is very important for timely prevention and treatment of foodborne disease. Here, a bacteria-imprinted conductive poly(3-thiopheneacetic acid) (BICP) film-based impedimetric sensor was developed for the rapid, sensitive and label-free detection of staphylococcus aureus (S. aureus). The BICP film preparation was very convenient and eco-friendly, which was in situ deposited on gold electrode surface without the use of toxic organic solvents and cross-linkers. The process of imprinting and recognition were characterized by electrochemical technique and scanning electron microscope. The BICP had a novel structure without cocci-shaped cavities formed in the poly(3-thiopheneacetic acid) (PTAA) matrices. To obtain the optimal sensing performance, a set of factors affecting the imprinting and recognition were investigated. Under the optimized conditions, an extremely rapid recognition within 10 min, a very low limit of detection (LOD) of 2 CFU/mL, and wide linear range from 10 to 10 CFU/mL were achieved by the BICP film-based impedimetric sensor. The sensor also demonstrated high selectivity, and good universality and repeatability. Furthermore, the feasibility of its application has also been demonstrated in the analysis of real milk samples. This sensor offered a simple and universal method for rapid, sensitive, and selective detection of pathogenic bacteria, which could hold great potentials in fields like food safety.
快速灵敏地检测致病菌对于及时预防和治疗食源性疾病非常重要。在这里,我们开发了一种基于细菌印迹导电聚(3-噻吩乙酸)(BICP)膜的阻抗传感器,用于快速、灵敏和无标记检测金黄色葡萄球菌(S. aureus)。BICP 膜的制备非常方便且环保,无需使用有毒有机溶剂和交联剂即可在金电极表面原位沉积。印迹和识别过程通过电化学技术和扫描电子显微镜进行了表征。BICP 具有独特的结构,在聚(3-噻吩乙酸)(PTAA)基质中没有形成球菌状腔。为了获得最佳的传感性能,我们研究了一组影响印迹和识别的因素。在优化条件下,基于 BICP 膜的阻抗传感器可在 10 min 内实现极快速识别,检测限(LOD)低至 2 CFU/mL,线性范围从 10 到 10 CFU/mL。该传感器还表现出高选择性、良好的通用性和重复性。此外,还验证了其在实际牛奶样品分析中的可行性。该传感器为快速、灵敏和选择性检测致病菌提供了一种简单通用的方法,在食品安全等领域具有很大的应用潜力。