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Electrical and Chemical Control of Surfaces for DNA Immobilization and Hybridization

机译:DNA固定化和杂交表面的电气和化学控制

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We present the design of two biointerfaces on a SiO_2 substrate for single stranded DNA (ssDNA) immobilization using either covalent grafting or electrostatic adsorption. The influence of the type of biointerface on the rate of diffusion-limited hybridization reaction with complementary ssDNA from a solution is studied. Patterning of the biointerface functionalization layers and the scaling down of the reaction volumes to μL range is demonstrated. The use of externally applied electric field pulses is shown to accelerate the hybridization reaction kinetics to the sub-ms time scale.
机译:我们在SiO_2基板上介绍了两个生物界面的用于单链DNA(SSDNA)固定的SiO_2基板上使用共价接枝或静电吸附。研究了生物界面类型对来自溶液的互补SsDNA的扩散限制杂交反应速率的影响。对生物界面官能化层的图案化并进行了反应体积的缩放到μL范围。示出了外部施加的电场脉冲的使用以将杂交反应动力学加速到子MS时间尺度。

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