Bratov Andrey, Ramón-Azcón Javier, Abramova Natalia, Merlos Angel, Adrian Javier, Sánchez-Baeza Francisco, Marco Maria-Pilar, Domínguez Carlos
Chemical Transducers Group, Instituto de Microelectronica de Barcelona, Centro Nacional de Microelectrónica (CSIC), Campus UAB, 08193 Bellaterra, Barcelona, Spain.
Biosens Bioelectron. 2008 Dec 1;24(4):729-35. doi: 10.1016/j.bios.2008.06.057. Epub 2008 Jul 11.
A new transducer for biosensor applications has been developed based on a three-dimensional interdigitated electrode array (IDEA) with electrode digits separated by an insulating barrier. Binding of molecules to a chemically modified surface of the transducer induces important changes in conductivity between the electrodes. Three-dimensional sensor shows considerable improvement compared with a standard planar IDEA design. The potential of the developed device as a sensor transducer to detect immunochemical and enzymatic reactions, as well as DNA hybridization events is demonstrated. The immunosensor allows direct detection of the antibiotic sulfapyridine and shows the IC(50) parameter value of 5.6 microgL(-1) in a buffer. Immunochemical determination occurs under competitive configurations and without the use of any label. Each modified sensor is of a single use. Nevertheless, biochemical reagents can be easily cleaned off the sensor surface for its reuse. Layer-by-layer method of used to deposit polyethyleneimine and glucose oxidase showed that the sensor is also highly effective for detecting single and multilayered molecular assemblies.
一种用于生物传感器应用的新型换能器已基于三维叉指电极阵列(IDEA)开发出来,电极指由绝缘屏障隔开。分子与换能器化学修饰表面的结合会引起电极之间电导率的重要变化。与标准平面IDEA设计相比,三维传感器有显著改进。展示了所开发的器件作为传感器换能器检测免疫化学和酶促反应以及DNA杂交事件的潜力。该免疫传感器能够直接检测抗生素磺胺吡啶,在缓冲液中显示出5.6 μg L⁻¹的IC(50)参数值。免疫化学测定在竞争配置下进行,且不使用任何标记。每个修饰的传感器都是一次性使用的。然而,生化试剂可以很容易地从传感器表面清除以便重复使用。用于沉积聚乙烯亚胺和葡萄糖氧化酶的层层方法表明,该传感器对于检测单层和多层分子组装也非常有效。