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Nanofluidic devices prepared by an atomic force microscopy-based single-scratch approach

机译:纳米流体通过原子力显微镜的单划线方法制备

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Nanofluidic chips with different numbers of nanochannels were fabricated based on a commercial AFM system using a single-scratch approach. The electrical characterization and enzymatic reactions at the nanoscale were demonstrated using the obtained chips. The effects of the number of nanochannels and the solution concentration on the measured electric current were investigated. The influence of the hydrodynamic convection generated from the induced inflow at the end of the nanochannel on the ion transport through the nanochannel was also studied. Moreover, the enzymatic reactions for trypsin towards poly-L-lysine (PLL) or thrombin were conducted with a nanofluidic chip to investigate the reaction specificity between trypsin and PLL. Results show that the electric current change during the experimental process could be used as a label-free indicator to detect the enzymatic activity.
机译:基于使用单划痕方法的商业AFM系统制造具有不同数量的纳米通道的纳米流体芯片。 使用所得芯片证明纳米级的电学表征和酶促反应。 研究了纳米数量和溶液浓度对测量电流的影响。 还研究了从纳米烷基末端末端产生的诱导流入的水动力对流的影响通过纳米南纳米的离子输送。 此外,用纳米流体芯片进行胰蛋白酶胰蛋白酶的酶反应,以研究胰蛋白酶和PLL之间的反应特异性。 结果表明,实验过程中的电流变化可用作无标记的指示剂以检测酶活性。

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    《RSC Advances》 |2019年第66期|共8页
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  • 正文语种 eng
  • 中图分类 化学;
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