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利用金修饰的单壁碳纳米管随机网络的多阶动态范围 DNA 传感器。

Multi-order dynamic range DNA sensor using a gold decorated SWCNT random network.

机构信息

NANO Systems Institute (NSI), Seoul National University, Seoul 151-742, Korea.

出版信息

ACS Nano. 2011 Jun 28;5(6):4365-72. doi: 10.1021/nn102938h. Epub 2011 May 17.

Abstract

A novel electrical DNA biosensor is presented, which consists of gold (Au) nanoscale islands and a single-walled carbon nanotube (SWCNT) network on top of a concentric Au electrode array (also referred to as the CGi). The decorated Au islands on the SWCNT network provide ideal docking sites for ss-DNA probe (p-DNA) molecules. They also provide better adhesion between the SWCNT network and the chip substrate. In addition, the concentric electrode gives asymmetric current voltage characteristics in the solution and provides more flexible bias options to the electrodes. The sensor system is applied to a DNA sensor after functionalization with a 25 mer p-DNA (5'-HSC(6)-C(18)-GCCATTCTCACCGGATTCAGTCGTC-3'), hereafter called the [CGi+p-DNA]. The response of the DNA sensor has been measured in both real-time during hybridization with the complementary target ss-DNAs (t-DNA) and the static mode after the hybridization and washing steps. A wide dynamic range from the 100 fM to 1 μM has been achieved from the real-time mode and the static mode. Moreover, it is shown that the sensor system differentiates partially mismatched (single nucleotide polymorphism (SNP), half mismatch, noncomplementary) t-DNA, as well. The [CGi] sensor platform can be easily extended to target specific biological recognition elements such as aptamers or proteins.

摘要

一种新型的电 DNA 生物传感器被提出,它由金(Au)纳米岛和单壁碳纳米管(SWCNT)网络组成,位于同心 Au 电极阵列(也称为 CGi)之上。SWCNT 网络上的修饰 Au 岛为 ss-DNA 探针(p-DNA)分子提供了理想的对接位点。它们还提供了 SWCNT 网络和芯片衬底之间更好的附着力。此外,同心电极在溶液中提供了不对称的电流电压特性,并为电极提供了更灵活的偏置选项。该传感器系统在经过 25 个碱基对 p-DNA(5'-HSC(6)-C(18)-GCCATTCTCACCGGATTCAGTCGTC-3')功能化后应用于 DNA 传感器,以下称为 [CGi+p-DNA]。在与互补目标 ss-DNA(t-DNA)杂交过程中的实时测量和杂交及洗涤步骤后的静态模式下,测量了 DNA 传感器的响应。已经从实时模式和静态模式获得了从 100 fM 到 1 μM 的宽动态范围。此外,还表明该传感器系统可以区分部分错配(单核苷酸多态性(SNP)、半错配、非互补)的 t-DNA。[CGi]传感器平台可以很容易地扩展到靶标特定的生物识别元件,如适体或蛋白质。

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