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Detection of a single enzyme molecule based on a solid-state nanopore sensor

机译:基于固态纳米孔传感器的单个酶分子检测

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The nanopore sensor as a high-throughput and low-cost technology can detect a single molecule in a solution. In the present study, relatively large silicon nitride (Si3N4) nanopores with diameters of similar to 28 and similar to 88 nm were fabricated successfully using a focused Ga ion beam. We have used solid-state nanopores with various sizes to detect the single horseradish peroxidase (HRP) molecule and for the first time analyzed single HRP molecular translocation events. In addition, a real-time monitored single enzyme molecular biochemical reaction and a translocation of the product of enzyme catalysis substrates were investigated by using a Si3N4 nanopore. Our nanopore system showed a high sensitivity in detecting single enzyme molecules and a real-time monitored single enzyme molecular biochemical reaction. This method could also be significant for studying gene expression or enzyme dynamics at the single-molecule level.
机译:纳米孔传感器是一种高通量,低成本的技术,可以检测溶液中的单个分子。在本研究中,使用聚焦Ga离子束成功制造了直径较大的氮化硅(Si3N4)纳米孔,其直径近似于28 nm,近似于88 nm。我们已使用各种大小的固态纳米孔来检测单个辣根过氧化物酶(HRP)分子,并首次分析了单个HRP分子移位事件。此外,通过使用Si3N4纳米孔研究了实时监测的单酶分子生化反应和酶催化底物产物的移位。我们的纳米孔系统在检测单个酶分子和实时监测单个酶分子生化反应方面显示出高灵敏度。该方法对于研究单分子水平的基因表达或酶动力学也可能具有重要意义。

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