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Biomimetic nanochannels based biosensor for ultrasensitive and label-free detection of nucleic acids

机译:基于仿生纳米通道的生物传感器,用于核酸的超灵敏和无标记检测

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摘要

A very simple sensing device based on biomimetic nanochannels has been developed for label-free, ultrasensitive and highly sequence-specific detection of DNA. Probe DNA was modified on the inner wall of the nanochannel surface by layer-by-layer (LBL) assembly. After probe DNA immobilization, DNA detection was realized by monitoring the rectified ion current when hybridization occurred. Due to three dimensional (3D) nanoscale environment of the nanochannel, this special geometry dramatically increased the surface area of the nanochannel for immobilization of probe molecules on the inner-surface and enlarged contact area between probes and target-molecules. Thus, the unique sensor reached a reliable detection limit of 10 fM for target DNA. In addition, this DNA sensor could discriminate complementary DNA (c-DNA) from non-complementary DNA (nc-DNA), two-base mismatched DNA (2bm-DNA) and one-base mismatched DNA (1bm-DNA) with high specificity. Moreover, the nanochannel-based biosensor was also able to detect target DNA even in an interfering environment and serum samples. This approach will provide a novel biosensing platform for detection and discrimination of disease-related molecular targets and unknown sequence DNA. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经开发出一种基于仿生纳米通道的非常简单的传感设备,用于无标记,超灵敏和高度序列特异性的DNA检测。探针DNA在纳米通道表面的内壁上通过逐层(LBL)组装进行了修饰。探针DNA固定后,通过监测发生杂交时的整流离子电流来实现DNA检测。由于纳米通道的三维(3D)纳米级环境,这种特殊的几何结构显着增加了纳米通道的表面积,可将探针分子固定在内表面上,并扩大了探针与目标分子之间的接触面积。因此,独特的传感器对目标DNA的可靠检测极限为10 fM。此外,该DNA传感器可以高特异性区分互补DNA(c-DNA)与非互补DNA(nc-DNA),两碱基错配DNA(2bm-DNA)和一碱基错配DNA(1bm-DNA)。 。此外,基于纳米通道的生物传感器即使在干扰环境和血清样品中也能够检测目标DNA。这种方法将为检测和区分疾病相关分子靶标和未知序列DNA提供一个新颖的生物传感平台。 (C)2016 Elsevier B.V.保留所有权利。

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