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Hybridization-induced interfacial changes detected by non-Faradaic impedimetric measurements compared to Faradaic approach

机译:与法拉第方法相比,通过非法拉第阻抗测量检测到杂交诱导的界面变化

摘要

A biosensor for direct label-free DNA detection based on a polythiophene matrix is investigated by electrochemical impedance spectroscopy (EIS). Impedimetric experiments are performed with and without redox probe in solution. The non-Faradaic impedance measurements reveal two relaxation processes located at 50 Hz and 5 kHz, respectively. The first relaxation process, located at low frequencies, allows to detect biorecognition events by measuring the phase angle decrease, in accordance with a hindrance of the polaronic conduction. The second relaxation process, located at 5 kHz and originating from DNA modification, seems to increase with the length of the target sequence. These results suggest that this loaded support provides a platform for impedimetric detection of hybridization at high frequencies, leading to less time-consuming detection procedure. For a better understanding, results obtained in non-Faradaic mode are compared with Faradaic approach.
机译:通过电化学阻抗谱(EIS)研究了基于聚噻吩基质的直接无标记DNA检测的生物传感器。在溶液中有或没有氧化还原探针的情况下进行阻抗实验。非法拉第阻抗测量揭示了分别位于50 Hz和5 kHz的两个弛豫过程。处于低频的第一弛豫过程允许根据极化子传导的障碍,通过测量相角减小来检测生物识别事件。第二个松弛过程位于5 kHz,起源于DNA修饰,似乎随着靶序列长度的增加而增加。这些结果表明,这种负载支持为高频阻抗杂交的阻抗检测提供了平台,从而减少了耗时的检测过程。为了更好地理解,将在非法拉第模式下获得的结果与法拉第方法进行了比较。

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