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Covalent immobilization of DNA and hybridization on microchips by microsecond electric field pulses

机译:微秒电场脉冲将DNA共价固定并在微芯片上杂交

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Single square voltage pulses were used to enhance by 7 and 9 orders of magnitude the rate of covalent immobilization and hybridization, respectively, of single stranded DNA probes on a chemically functionalized thin film surface (silicon dioxide) using 2 mm size electrodes. These electrodes were scaled down to 20 μm. Photolithography was used to define the electrode voltage line, ground line, and functionalized thin-film area on a plastic substrate (polyimide). At all electrode dimensions, electric field-assisted DNA immobilization and hybridization can be achieved in the microsecond time scale, far faster than the 2 hr or 16 hr needed for immobilization and hybridization, respectively, without the electric field. Pulse conditions optimized with the large-size electrodes (2 mm) were used in the microelectrodes.
机译:使用单平方电压脉冲分别使用2 mm尺寸的电极将单链DNA探针在化学功能化薄膜表面(二氧化硅)上的共价固定和杂交速率分别提高7和9个数量级。这些电极按比例缩小至20μm。光刻用于定义塑料基板(聚酰亚胺)上的电极电压线,地线和功能化薄膜区域。在所有电极尺寸下,可以在微秒级的时间内完成电场辅助的DNA固定和杂交,远远快于没有电场的固定和杂交所需的2小时或16小时。在微电极中使用了通过大尺寸电极(2毫米)优化的脉冲条件。

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