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利用投影电容触摸屏的无标记多重 DNA 检测

Label-Free Multiplex DNA Detection Utilizing Projected Capacitive Touchscreen.

机构信息

Department of Chemical and Biomolecular Engineering (BK21+ Program), Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Republic of Korea.

出版信息

Biotechnol J. 2018 Feb;13(2). doi: 10.1002/biot.201700362. Epub 2017 Nov 15.

Abstract

A novel strategy to achieve label-free multiplex DNA detection system based on the projected capacitive touchscreen is developed. Touchscreen panel is first fabricated by patterning the ITO (indium-tin-oxide) electrode array on the glass wafer, and the electrodes are modified with the respective capture probe DNA sequences complementary to hemagglutinin1 (H1), neuraminidase1 (N1), and matrix1 (M1) DNA to demonstrate the molecular diagnosis of H1N1 influenza virus as a model pathogen. DNA sample is applied to the electrodes to allow hybridization of target DNA with the corresponding complementary capture probe. As a result, the hybridization event significantly enhanced the capacitance on the electrode, which can be very conveniently detected by the projected capacitive touchscreen. Based on this design principle, the authors have successfully detected target regions of H1N1 influenza virus in a label-free multiplexed manner. This touchscreen-based detecting system would greatly benefit the point-of-care testing (POCT) in various diagnostic applications.

摘要

开发了一种基于投影电容触摸屏的新型无标记多重 DNA 检测系统的策略。首先通过在玻璃晶圆上图案化 ITO(铟锡氧化物)电极阵列来制造触摸屏面板,然后用与血凝素 1(H1)、神经氨酸酶 1(N1)和基质 1(M1)DNA 互补的各自捕获探针 DNA 序列对电极进行修饰,以证明 H1N1 流感病毒作为模型病原体的分子诊断。将 DNA 样本施加到电极上,以使靶 DNA 与相应的互补捕获探针杂交。结果,杂交事件显著增强了电极上的电容,这可以通过投影电容触摸屏非常方便地检测到。基于这一设计原理,作者已经成功地以无标记的多重方式检测到了 H1N1 流感病毒的靶区。这种基于触摸屏的检测系统将极大地有益于各种诊断应用中的即时检测(POCT)。

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