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导电聚合物膜修饰金刚石上DNA杂交的电化学阻抗传感

Electrochemical impedance sensing of DNA hybridization on conducting polymer film-modified diamond.

作者信息

Gu Huiru, Su Xiao di, Loh Kian Ping

机构信息

Institute of Materials Research and Engineering, 3 Research Link, Singapore 117602.

出版信息

J Phys Chem B. 2005 Jul 21;109(28):13611-8. doi: 10.1021/jp050625p.

DOI:10.1021/jp050625p
PMID:16852705
Abstract

The impedimetric sensing of DNA hybridization on polyaniline/polyacrylate (PANI/PAA)-modified boron-doped diamond (BDD) electrode has been investigated. An ultrathin film of PANI-PAA copolymer was electropolymerized onto the diamond surfaces to provide carboxylic groups for tethering to DNA sensing probes. The electrochemical impedance and the intrinsic electroactivity of the polymer-diamond interface were analyzed after the hybridization reaction with target and non-target DNA. The impedance measurement shows changes in the impedance modulus as well as electron-transfer resistance at the stage of probe DNA immobilization (single-strand), as well as after hybridization with target DNA (double-strand). DNA hybridization increases the capacitance of the polymer-DNA layer and reduces the overall impedance of the DNA-polymer-diamond stack significantly. The polymer-modified BDD electrode shows no detectable nonspecific adsorption, with good selectivity between the complementary DNA targets and the one-base mismatch targets. The detection limit was measured to be 2 x 10(-8) M at 1000 Hz. Denaturing test on the hybridized probe and subsequent reuse of the probe indicates chemical robustness of the sensor. Our results suggest that electropolymerization followed by the immobilization of biomolecules is a simple and effective way of creating a functional biomolecular scaffold on the diamond surface. In addition, label-free electrochemical impedance method can provide direct and noninvasive sensing of DNA hybridization on BDD.

摘要

研究了聚苯胺/聚丙烯酸酯(PANI/PAA)修饰的硼掺杂金刚石(BDD)电极上DNA杂交的阻抗传感。将PANI-PAA共聚物的超薄膜电聚合到金刚石表面,以提供用于连接DNA传感探针的羧基。在与目标DNA和非目标DNA杂交反应后,分析了聚合物-金刚石界面的电化学阻抗和固有电活性。阻抗测量显示在探针DNA固定化阶段(单链)以及与目标DNA杂交后(双链),阻抗模量和电子转移电阻都发生了变化。DNA杂交增加了聚合物-DNA层的电容,并显著降低了DNA-聚合物-金刚石堆叠体的整体阻抗。聚合物修饰的BDD电极未检测到非特异性吸附,对互补DNA靶标和单碱基错配靶标具有良好的选择性。在1000 Hz下测得的检测限为2×10^(-8) M。对杂交探针进行变性测试并随后重复使用该探针,表明该传感器具有化学稳定性。我们的结果表明,先进行电聚合然后固定生物分子是在金刚石表面创建功能性生物分子支架的一种简单有效的方法。此外,无标记电化学阻抗方法可以提供对BDD上DNA杂交的直接和非侵入性传感。

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