纳米孔
纳米孔测序
DNA
热泳
聚合物
纳米技术
染色体易位
化学物理
碱基对
生物物理学
材料科学
膜
电泳
DNA测序
化学
纳米颗粒
生物
色谱法
生物化学
基因
复合材料
纳米流体
作者
Yuhui He,Makusu Tsutsui,Ralph H. Scheicher,Fan Bai,Masateru Taniguchi,Tomoji Kawai
出处
期刊:ACS Nano
[American Chemical Society]
日期:2012-12-02
卷期号:7 (1): 538-546
被引量:84
摘要
Manipulating DNA translocation through nanopore is one crucial requirement for new ultrafast sequencing methods in the sense that the polymers have to be denatured, unraveled, and then propelled through the pore with very low speed. Here we propose and theoretically explore a novel design to fulfill the demands by utilizing cross-pore thermal gradient. The high temperature in the cis reservoir is expected to transform double-stranded DNA into single strands and that temperature would also prevent those single strands from intrastrand base-pairing, thus, achieving favorable polymer conformation for the subsequent translocation and sequencing. Then, the substantial temperature drop across the pore caused by the thermal-insulating membrane separating cis and trans chambers would stimulate thermophoresis of the molecules through nanopores. Our theoretical evaluation shows that the DNA translocation speeds will be orders smaller than the electrophoretic counterpart, while high capture rate of DNA into nanopore is maintained, both of which would greatly benefit the sequencing.
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