期刊文献+

Temperature effect on translocation speed and capture rate of nanopore-based DNA detection 被引量:2

Temperature effect on translocation speed and capture rate of nanopore-based DNA detection
原文传递
导出
摘要 We study the effects of electrolyte temperature on DNA molecule translocation experimentally without and with a temperature gradient across nanopore membranes.The same temperatures on both electrolyte chambers are first considered.The DNA molecule translocation time is measured to be 2.44 ms at 2°C in both chambers,which is 1.57 times longer than at 20°C.Then the temperature difference effect is characterized in both chambers.The results show that the DNA translocation speed can be slowed down as long as one side temperature is lowered,irrespective of the temperature gradient direction.This indicates that the thermophoretic driving force generated by a temperature gradient has no obvious effect on the threading speed of DNA molecules,while the main reason for the slowed DNA translocation speed is the increased viscosity.Interestingly,the capture rate of DNA molecules is enhanced under a temperature gradient condition,and the capture rate during DNA translocation from hot side at 21°C to cold one at 2°C is 1.7 times larger than that under the condition of both chambers at 20°C.Finally,an optimized configuration is proposed to acquire higher capture rates and lower DNA translocation speeds.
出处 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第3期519-525,共7页 中国科学(技术科学英文版)
基金 supported by the National Basic Research Program of China("973"Project)(Grant Nos.2011CB707601 and 2011CB707605) the National Natural Science Foundation of China(Grants Nos.50925519 and 51375092) supported by the Scientific Research Foundation of Graduate School of Southeast University(Grant No.YBJJ1004) supported by the Fundamental Research Funds for the Central Universities and the Innovative Project for Graduate Students of Jiangsu Province(Grant No.KYLX_0100)
关键词 NANOPORE DNA detection temperature translocation speed capture rate DNA检测 温度效应 转速度 捕获率 纳米孔 DNA分子 基础 温度梯度
  • 相关文献

参考文献2

二级参考文献33

  • 1Chang H, Kosari F, Andreadakis G, et al. DNA-mediated fluctuations in ionic current through silicon oxide nanopore channels. Nano Lett, 2004, 4(8): 1551-1556.
  • 2Venkatesan B M, Dorvel B, Yemenicioglu S, et al. Highly sensitive, mechanically stable nanopore sensors for DNA analysis. Adv Mater, 2009, 21 (27): 2771-2776.
  • 3Uplinger J, Thomas B, Rollings R, et al. K, na, and mg2 on DNA translocation in silicon nitride nanopores. Electrophoresis, 2012, 33(23): 3448-3457.
  • 4Schneider G F, Kowalczyk S W, Calado V E, et al. DNA translocation through graphene nanopores. Nano Lett, 2010, 10(8): 3163-3167.
  • 5Kasianowicz J J, Brandin E, Branton D, et al. Characterization of individual polynucleotide molecules using a membrane channel. P Natl Acad Sci USA, 1996, 93(24): 13770-13773.
  • 6Hall A R, Scott A, Rotem D, et al. Hybrid pore formation by directedinsertion of alpha-haemolysin into solid-state nanopores. Nat Nanotechnol, 2010, 5(12): 874-877.
  • 7Jin Q, Fleming A M, Burrows C J, et al. Unzipping kinetics of duplex DNA containing oxidized lesions in an a-hemolysin nanopore. J Am Chem Soc, 2012, 134(26): 11006-11011.
  • 8Wen S, Zeng T, L'iu "L, et al. Highly sensitive and selective DNA-based detection of mercury(ii) with alpha-hemolysin nanopore. J Am Chem Soc, 2011, 133(45): 18312-18317.
  • 9Garaj S, Hubbard W, Reina A, et al. Graphene as a subnanometre trans-electrode membrane. Nature, 2010, 467(7312): 190-U173.
  • 10Wanunu M, Morrison W, Rabin Y, et al. Electrostatic focusing of unlabelled DNA into nanoscale pores using a salt gradient. Nat Nanotechnol, 2010, 5(2): 160-165.

共引文献9

同被引文献11

引证文献2

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部