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AN ELECTROKINETICALLY CONTROLLED DNA HYBRIDIZATION CHIP

机译:电动控制的DNA杂交芯片

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摘要

Biosensors and more specifically biochips exploit the interactions between a target analyte and an immobilized biological recognition element to produce a measurable signal. Systems based on surface phase nucleic acid hybridization, such as modern microarrays, are particularly attractive due to the high degree of selectivity in the binding interactions. One drawback of this reaction is the relatively long time required for complete hybridization to occur, as a result of the diffusion limited reaction kinetics. In this work an electrokinetically controlled DNA hybridization microfluidic chip will be introduced. The electrokinetic delivery technique provides the ability to dispense controlled sample sizes to the hybridization array while serving to increase the mass transfer rate and therefore the reaction speed. The focus of this paper will be on the design and microfabrication of the chip, the unique H-type channel structure and electrokinetic sample delivery and washing technique, and development of the on-line hybridization scanning. Initial hybridization results presented here demonstrate that less than 5 minutes and 4.9nL of 0.5μM ssDNA sample was required (35s dispensing period followed by a 4 minute wash) for complete hybridization.
机译:生物传感器,更具体地说是生物芯片,利用目标分析物和固定的生物识别元件之间的相互作用来产生可测量的信号。由于结合相互作用的高度选择性,基于表面相核酸杂交的系统,例如现代微阵列,特别具有吸引力。该反应的一个缺点是,由于扩散受限的反应动力学,发生完全杂交所需的时间相对较长。在这项工作中,将引入电动控制的DNA杂交微流控芯片。电动递送技术提供了将受控的样品量分配到杂交阵列的能力,同时用于增加传质速率并因此提高反应速度。本文的重点将放在芯片的设计和微制造,独特的H型通道结构以及电动样品输送和清洗技术以及在线杂交扫描技术的开发上。此处给出的初步杂交结果表明,完整杂交所需的时间少于5分钟,且需要4.9nL的0.5μMssDNA样品(35 s的分配时间,然后进行4分钟的洗涤)。

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