Single-molecule Spectroscopy using nanoporous membranes

  • Chansin, Guillaume A. T.; 
  • Mulero, Rafael; 
  • Hong, Jongin; 
  • Kim, Min Jun; 
  • deMello, Andrew J.; 
  • 외 1명
Citations

WEB OF SCIENCE

102
Citations

SCOPUS

110

초록

We describe a novel approach for optically detecting DNA translocation events through an array of solid-state nanopores that potentially allows for ultra high-throughput, parallel detection at the single-molecule level. The approach functions by electrokinetically driving DNA strands through sub micrometer-sized holes on an aluminum/silicon nitride membrane. During the translocation process, the molecules are confined to the walls of the nanofluidic channels, allowing 100% detection efficiency. Importantly, the opaque aluminum layer acts as an optical barrier between the illuminated region and the analyte reservoir. In these conditions, high-contrast imaging of single-molecule events can be performed. To demonstrate the efficiency of the approach, a 10 pM fluorescently labeled lambda-DNA solution was used as a model system to detect simultaneous translocation events using electron multiplying CCD imaging. Single-pore translocation events are also successfully detected using single-point confocal spectroscopy.

키워드

SOLID-STATE NANOPORES; ACID; DISCRIMINATION; SEPARATION; SYSTEMS
제목
Single-molecule Spectroscopy using nanoporous membranes
저자
Chansin, Guillaume A. T.; Mulero, Rafael; Hong, Jongin; Kim, Min Jun; deMello, Andrew J.; Edel, Joshua B.
DOI
10.1021/nl071855d
발행일
2007-09
유형
Article
저널명
Nano Letters
권
7
호
9
페이지
2901 ~ 2906