Peng Hui, Soeller Christian, Vigar Nickolas, Kilmartin Paul A, Cannell Mark B, Bowmaker Graham A, Cooney Ralph P, Travas-Sejdic Jadranka
Polymer Electronics Research Centre, The University of Auckland, Private Bag 92019, Auckland, New Zealand.
Biosens Bioelectron. 2005 Mar 15;20(9):1821-8. doi: 10.1016/j.bios.2004.07.013.
A simple and label-free electrochemical sensor for recognition of the DNA hybridization event was prepared based on a new functionalised conducting copolymer, poly[pyrrole-co-4-(3-pyrrolyl) butanoic acid]. This precursor copolymer can be easily electrodeposited on the electrode surface and shows high electroactivity in an aqueous medium. An amino-substituted oligonucleotide (ODN) probe was covalently grafted onto the surface of the copolymer in a one step procedure and tested on hybridization with complementary ODN segments. The cyclic voltammogram of ODN probe-modified copolymer showed very little change when incubated in presence of non-complementary ODN, while a significant, and reproducible, modification of the voltammogram was observed after addition of complementary ODN. The AC impedance spectrum showed an increased charge transfer resistance (Rct) and double layer capacitance of the sensor film after hybridisation. Sensors with thinner films showed higher sensitivity than thicker films, suggesting that hybridisation at or near the surface of the film produces a larger change in electrical properties than that within the body of the film.
基于一种新型功能化导电共聚物聚[吡咯-co-4-(3-吡咯基)丁酸],制备了一种用于识别DNA杂交事件的简单且无标记的电化学传感器。这种前体共聚物能够轻松地电沉积在电极表面,并且在水性介质中表现出高电活性。通过一步法将氨基取代的寡核苷酸(ODN)探针共价接枝到共聚物表面,并对其与互补ODN片段的杂交情况进行测试。当在非互补ODN存在下孵育时,ODN探针修饰的共聚物的循环伏安图变化很小,而在加入互补ODN后,观察到伏安图有显著且可重复的变化。交流阻抗谱显示杂交后传感器膜的电荷转移电阻(Rct)增加,双层电容增大。薄膜传感器比厚膜传感器具有更高的灵敏度,这表明在膜表面或其附近的杂交比在膜主体内部产生的电学性质变化更大。