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使用有机薄膜晶体管的无标记、低成本、一次性 DNA 杂交检测系统。

Label-free low-cost disposable DNA hybridization detection systems using organic TFTs.

机构信息

Department of Electrical Engineering and Computer Sciences, University of California, Berkeley, CA 94720, USA.

出版信息

Biosens Bioelectron. 2010 Jan 15;25(5):972-7. doi: 10.1016/j.bios.2009.09.008. Epub 2009 Sep 9.

Abstract

Organic thin film transistors (OTFT) are potentially very attractive for making portable and disposable DNA hybridization detection toolkits because of their ultra-low-cost manufacturing and potentially high sensitivity. To make a self-supported DNA sensor, we herein report an OTFT-based label-free DNA hybridization detection system integrating electrically read DNA hybridization sensors and microfluidic delivery channels. We previously reported DNA-doped OTFTs acting as electrically read DNA sensors. In this article, we first study physics of DNA sensitivity of OTFTs, clarifying the doping mechanism. The article also presents a method of verification of the immobilization and presence of DNA on the surface using TOF-SIMS analysis. As a further step, sources of variation of measured data and methods of minimization are discussed using a novel photolithography-based microfluidics fabrication method, directly enabling on-chip hybridization and self-supported DNA detection. By integrating the sensors with microfluidics, for the first time, we demonstrate necessary technologies required to realize disposable, rapid turn-around tools for field-deployable genetic diagnosis.

摘要

有机薄膜晶体管(OTFT)由于其超低成本制造和潜在的高灵敏度,非常适合用于制造便携式和一次性 DNA 杂交检测工具包。为了制作自支撑的 DNA 传感器,我们在此报告了一种基于 OTFT 的无标记 DNA 杂交检测系统,该系统集成了电读取 DNA 杂交传感器和微流道输送通道。我们之前曾报道过 DNA 掺杂 OTFT 作为电读取 DNA 传感器。在本文中,我们首先研究了 OTFT 的 DNA 灵敏度的物理特性,阐明了掺杂机制。本文还提出了一种使用 TOF-SIMS 分析来验证 DNA 在表面上的固定和存在的方法。作为进一步的步骤,使用新型基于光刻的微流加工方法讨论了测量数据的变化源和最小化方法,该方法直接实现了芯片上的杂交和自支撑 DNA 检测。通过将传感器与微流道集成,我们首次展示了实现用于现场部署的基因诊断的一次性、快速周转工具所需的必要技术。

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