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Mass-Produced Nanogap Sensor Arrays for Ultrasensitive Detection of DNA

机译:用于DNA超灵敏检测的大规模生产的纳米间隙传感器阵列

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摘要

In this report, an electrical detection scheme for the quantification of DNA using a nanogap sensor array is detailed. The prime objective is to develop a novel sensing procedure, based on the electronic transduction mechanism, which would mitigate the problems intrinsic to nanostructure-based biosensing devices. Design considerations of the sensor array take into account the feasibility of mass production in a cost-effective way by using standard silicon microfabrication technologies. The sensing mechanism relies on bridging the nanogap upon hybridization of the two termini of a target DNA with two different surface-bound capture probes, followed by a simple metallization step. About 2 orders of magnitude enhancement in conductance, as referred to a clean background (<1.0 pS) observed at a control sensor, was obtained in the presence of as little as 1.0 fM target DNA. This sensitivity is comparable to the best of electrochemical/ electrical biosensors. A linear relationship between the conductance and the DNA concentration was obtained from 1.0 fM to 1.0 pM with an exceptional signal intensity of 2.1 × 10~4% change per unit concentration. This change in conductivity is so large that it can unambiguously detect the concentration of DNA quantitatively and may obviate the need for target amplification used in current DNA tests. Moreover, the sensor array exhibited excellent single-base mismatch discrimination due to its unique vertically aligned nanostructure and the two-probe configuration.
机译:在此报告中,详细介绍了使用纳米间隙传感器阵列对DNA进行定量的电检测方案。主要目标是开发一种基于电子转导机制的新颖传感程序,该程序将减轻基于纳米结构的生物传感设备固有的问题。传感器阵列的设计考虑因素考虑了通过使用标准的硅微制造技术以经济有效的方式进行批量生产的可行性。感测机制依赖于在靶DNA的两个末端与两个不同的表面结合捕获探针杂交后弥合纳米间隙,然后进行简单的金属化步骤。在只有1.0 fM靶DNA的情况下,获得了大约2个数量级的电导率提高,这是在控制传感器处观察到的纯净背景(<1.0 pS)。这种灵敏度可与最佳的电化学/电生物传感器媲美。在1.0 fM至1.0 pM之间获得了电导率与DNA浓度之间的线性关系,每单位浓度的信号强度变化为2.1×10〜4%。电导率的这种变化是如此之大,以至于可以明确地定量检测DNA的浓度,并且可以避免当前DNA测试中对靶标扩增的需求。此外,由于其独特的垂直排列的纳米结构和双探针配置,该传感器阵列表现出出色的单碱基失配辨别力。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2009年第34期|12211-12217|共7页
  • 作者单位

    Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, Singapore 138669;

    Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, Singapore 138669;

    Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, Singapore 138669;

    Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, Singapore 138669;

    Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, Singapore 138669;

    Institute of Bioengineering and Nanotechnology, 31 Biopolis Way, Singapore 138669;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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