Zacco E, Pividori M I, Alegret S, Galve R, Marco M-P
Sensors & Biosensors Group, Analytical Chemistry Division, Department of Chemistry, Autonomous University of Barcelona, 08193 Bellaterra, Catalonia, Spain.
Anal Chem. 2006 Mar 15;78(6):1780-8. doi: 10.1021/ac0512610.
A novel electrochemical immunosensing strategy for the detection of atrazine based on magnetic beads is presented. Different coupling strategies for the modification of the magnetic beads with the specific anti-atrazine antibody have been developed. The immunological reaction for the detection of atrazine performed on the magnetic bead is based on a direct competitive assay using a peroxidase (HRP) tracer as the enzymatic label. After the immunochemical reactions, the modified magnetic beads can be easily captured by a magnetosensor made of graphite-epoxy composite, which is also used as the transducer for the electrochemical immunosensing. The electrochemical detection is thus achieved through a suitable substrate and mediator for the enzyme HRP. The electrochemical approach is also compared with a novel magneto-ELISA based on optical detection. The performance of the electrochemical immunosensing strategy based on magnetic beads was successfully evaluated using spiked real orange juice samples. The detection limit for atrazine using the competitive electrochemical magnetoimmunosensing strategy with anti-atrazine-specific antibody covalent coupled with tosyl-activated magnetic beads was found to be 6 x 10(-3) microg L(-1) (0.027 nmol L(-1)). This strategy offers great promise for rapid, simple, cost-effective, and on-site analysis of biological, food, and environmental samples.
提出了一种基于磁珠检测莠去津的新型电化学免疫传感策略。已开发出用特异性抗莠去津抗体修饰磁珠的不同偶联策略。在磁珠上进行的莠去津检测的免疫反应基于使用过氧化物酶(HRP)示踪剂作为酶标记的直接竞争分析。免疫化学反应后,修饰的磁珠可被由石墨 - 环氧复合材料制成的磁传感器轻松捕获,该磁传感器也用作电化学免疫传感的换能器。因此,通过适用于酶HRP的底物和介质实现电化学检测。还将电化学方法与基于光学检测的新型磁酶联免疫吸附测定进行了比较。使用加标的真实橙汁样品成功评估了基于磁珠的电化学免疫传感策略的性能。发现使用与甲苯磺酰活化磁珠共价偶联的抗莠去津特异性抗体的竞争性电化学磁免疫传感策略对莠去津的检测限为6×10(-3)μg L(-1)(0.027 nmol L(-1))。该策略为生物、食品和环境样品的快速、简单、经济高效的现场分析提供了广阔前景。