Zhou Yaohong, Wang Haidong
Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China.
ACS Omega. 2022 May 6;7(19):16422-16429. doi: 10.1021/acsomega.2c00438. eCollection 2022 May 17.
In recent years, sensing technology based on nanopores has become one of the trustworthy options for characterization and even identification of a single biomolecule. In nanopore based DNA sequencing technology, the DNA strand in the electrolyte solution passes through the nanopore under an applied bias electric field. Commonly, the ionic current signals carrying the sequence information are difficult to detect effectively due to the fast translocation speed of the DNA strand, so that slowing down the translocation speed is expected to make the signals easier to distinguish and improve the sequencing accuracy. Modifying the nanopore structure is one of the effective methods. Through all-atom molecular dynamics simulations, we designed an asymmetric double-layer graphene nanopore structure to regulate the translocation speed of a single carbon chain. The structure consists of two nanopores with different sizes located on two layers. The simulation results indicate that the asymmetric nanopore structure will affect the chain's translocation speed and the ionic current value. When the single carbon chain passes from the smaller pore to the larger pore, the translocation time is significantly prolonged, which is about three times as long as the chain passing from the larger pore to the smaller pore. These results provide a new idea for designing more accurate and effective single-molecule solid-state nanopore sensors.
近年来,基于纳米孔的传感技术已成为表征甚至识别单个生物分子的可靠选择之一。在基于纳米孔的DNA测序技术中,电解质溶液中的DNA链在施加的偏置电场作用下穿过纳米孔。通常,由于DNA链的快速转运速度,携带序列信息的离子电流信号难以有效检测,因此减慢转运速度有望使信号更易于区分并提高测序准确性。修饰纳米孔结构是有效方法之一。通过全原子分子动力学模拟,我们设计了一种不对称双层石墨烯纳米孔结构来调节单碳链的转运速度。该结构由位于两层上的两个不同尺寸的纳米孔组成。模拟结果表明,不对称纳米孔结构会影响链的转运速度和离子电流值。当单碳链从小孔进入大孔时,转运时间会显著延长,约为链从大孔进入小孔时的三倍。这些结果为设计更精确有效的单分子固态纳米孔传感器提供了新思路。