A self-assembly conductive device for direct DNA identification in integrated microarray based system

M. Xue, Jiong Li, Wen Xu, Zuhong Lu, K. Wang, P. Ko, M. Chan
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引用次数: 6

Abstract

A self-assembly conductive method for DNA identification has been demonstrated to be used in an array based microelectronic biochip. The detailed fabrication steps of the device and the procedures to identify targeted samples with gold nanoparticle labels are presented. By using the pre-hybridization and amplification method, the sensitivity of this array-based microelectronic biochip exceeds that of a traditional fluorescence detection system by three orders of magnitude. The device is simple and compatible with standard IC fabrication technology with slight modification to the last passivation and metallization process. A substantial difference in current is measured from the device with matched and unmatched DNA samples, which can be easily detected by any modern IC comparator.
集成微阵列系统中用于DNA直接识别的自组装导电装置
一种用于DNA鉴定的自组装导电方法已被证明用于基于阵列的微电子生物芯片。介绍了该装置的详细制作步骤和用金纳米颗粒标记识别目标样品的步骤。通过预杂交和扩增的方法,该阵列微电子生物芯片的灵敏度比传统的荧光检测系统提高了三个数量级。该器件简单,与标准集成电路制造技术兼容,对最后的钝化和金属化工艺进行了轻微的修改。从匹配和不匹配的DNA样本的设备测量电流的实质性差异,这可以很容易地检测到任何现代IC比较器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
4.50
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0.00%
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