Nanochannel confinement: DNA stretch approaching full contour length

  • Kim, Yoori; 
  • Kim, Ki Seok; 
  • Kounovsky, Kristy L.; 
  • Chang, Rakwoo; 
  • Jung, Gun Young; 
  • ... Jo, Kyubong; 
  • 외 2명
Citations

WEB OF SCIENCE

128
Citations

SCOPUS

136

초록

Fully stretched DNA molecules are becoming a fundamental component of new systems for comprehensive genome analysis. Among a number of approaches for elongating DNA molecules, nanofluidic molecular confinement has received enormous attentions from physical and biological communities for the last several years. Here we demonstrate a well-optimized condition that a DNA molecule can stretch almost to its full contour length: the average stretch is 19.1 mu m +/- 1.1 mu m for YOYO-1 stained lambda DNA ( 21.8 mu m contour length) in 250 nm x 400 nm channel, which is the longest stretch value ever reported in any nanochannels or nanoslits. In addition, based on Odijk's polymer physics theory, we interpret our experimental findings as a function of channel dimensions and ionic strengths. Furthermore, we develop a Monte Carlo simulation approach using a primitive model for the rigorous understanding of DNA confinement effects. Collectively, we present a more complete understanding of nanochannel confined DNA stretching via the comparisons to computer simulation results and Odijk's polymer physics theory.

키워드

SINGLE; DYNAMICS; POLYELECTROLYTES; SIMULATION; ALIGNMENT; POLYMER; SYSTEM
제목
Nanochannel confinement: DNA stretch approaching full contour length
저자
Kim, Yoori; Kim, Ki Seok; Kounovsky, Kristy L.; Chang, Rakwoo; Jung, Gun Young; dePablo, Juan J.; Jo, Kyubong; Schwartz, David C.
DOI
10.1039/c0lc00680g
발행일
2011
유형
Article
저널명
Lab on a Chip
권
11
호
10
페이지
1721 ~ 1729