External forces and confinement are two fundamental and complementary approaches for biopolymer stretching. By employing micro- and nanofluidics, we study the force–extension dynamics by simultaneously applying external forces and confinement to single-DNA molecules. In particular, we apply external electric fields to stretch single DNA molecules that are attached to microspheres anchored at a nanoslit entrance. Using this method, we measure the force–extension relation of tethered DNA and describe this relation with modified wormlike chain models. This allowed experimental validations of several theoretical predictions, including the increase in the global persistence length of confined DNA with increasing degree of confinement and the “co...
We investigate the elastic response of a single DNA molecule to an external electric field in two di...
We investigate the elastic response of a single DNA molecule to an external electric field in two di...
In living systems DNA is subjected to considerable confinement but the molecule acts itself also as ...
External forces and confinement are two fundamental and complementary approaches for biopolymer stre...
We experimentally investigate the stretching and relaxation of individual double-stranded DNA molecu...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, February 2011...
There is currently a growing interest in control of stretching of DNA inside nanoconfined regions du...
ABSTRACT: We experimentally investigate the influence of slitlike confinement on the coil-stretch tr...
Force-extension (F-x) relationships were measured for single molecules of DNA under a variety of buf...
AbstractDuring a variety of biological and technological processes, biopolymers are simultaneously s...
The successful design of nanofluidic devices for the manipulation of biopolymers requires an underst...
Stretching of DNA in nanoscale confinement allows for direct visualization of the genetic contents o...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2010.Cataloge...
During a variety of biological and technological processes, biopolymers are simultaneously subject t...
Abstract: We have used internal coordinate molecular mechanics calculations to study how the DNA dou...
We investigate the elastic response of a single DNA molecule to an external electric field in two di...
We investigate the elastic response of a single DNA molecule to an external electric field in two di...
In living systems DNA is subjected to considerable confinement but the molecule acts itself also as ...
External forces and confinement are two fundamental and complementary approaches for biopolymer stre...
We experimentally investigate the stretching and relaxation of individual double-stranded DNA molecu...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, February 2011...
There is currently a growing interest in control of stretching of DNA inside nanoconfined regions du...
ABSTRACT: We experimentally investigate the influence of slitlike confinement on the coil-stretch tr...
Force-extension (F-x) relationships were measured for single molecules of DNA under a variety of buf...
AbstractDuring a variety of biological and technological processes, biopolymers are simultaneously s...
The successful design of nanofluidic devices for the manipulation of biopolymers requires an underst...
Stretching of DNA in nanoscale confinement allows for direct visualization of the genetic contents o...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2010.Cataloge...
During a variety of biological and technological processes, biopolymers are simultaneously subject t...
Abstract: We have used internal coordinate molecular mechanics calculations to study how the DNA dou...
We investigate the elastic response of a single DNA molecule to an external electric field in two di...
We investigate the elastic response of a single DNA molecule to an external electric field in two di...
In living systems DNA is subjected to considerable confinement but the molecule acts itself also as ...