There is potential for flight time based DNA sequencing involving disassembly into individual nucleotides which would pass through a nanochannel with two or more detectors. We performed molecular dynamics simulations of electrophoretic motion of single DNA nucleotides through 3 nm wide hydrophobic slits with both smooth and rough walls. The electric field (<i>E</i>) varied from 0.0 to 0.6 V/nm. The nucleotides adsorb and desorb from walls multiple times during their transit through the slit. The nucleotide–wall interactions differed due to nucleotide hydrophobicities and wall roughness which determined duration and frequency of nucleotide adsorptions and their velocities while adsorbed. Transient association of nucleotides with one, two, or...
We study the electrophoretic transport of single-stranded RNA molecules through 1.5-nm-wide pores of...
Solid-state nanopores have emerged as possible candidates for next-generation DNA sequencing devices...
A nanopore is the ultimate analytical tool. It can be used to detect DNA, RNA, oligonucleotides, and...
Discrimination of single nucleotides by a nanopore remains a challenge because of the minor differen...
Experimental and simulation studies of nucleic acid transport through nanosized channels, both biolo...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
The electrokinetic transport dynamics of deoxyribonucleic acid (DNA) molecules have recently attract...
International audienceWhen single short adenine oligonucleotides (d.p. 3-5) block the pore formed by...
The protein nanopore <i>Mycobacteria smegmatis</i> porin A (MspA), can be used to sense individual n...
Single molecule measurements of DNA transport through a nanopore We examined the voltage-driven move...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
It has been theoretically suggested and experimentally demonstrated that fast and low-cost sequencin...
AbstractSequencing DNA in a synthetic solid-state nanopore is potentially a low-cost and high-throug...
AbstractEach species from bacteria to human has a distinct genetic fingerprint. Therefore, a mechani...
ABSTRACT Each species from bacteria to human has a distinct genetic fingerprint. Therefore, a mechan...
We study the electrophoretic transport of single-stranded RNA molecules through 1.5-nm-wide pores of...
Solid-state nanopores have emerged as possible candidates for next-generation DNA sequencing devices...
A nanopore is the ultimate analytical tool. It can be used to detect DNA, RNA, oligonucleotides, and...
Discrimination of single nucleotides by a nanopore remains a challenge because of the minor differen...
Experimental and simulation studies of nucleic acid transport through nanosized channels, both biolo...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
The electrokinetic transport dynamics of deoxyribonucleic acid (DNA) molecules have recently attract...
International audienceWhen single short adenine oligonucleotides (d.p. 3-5) block the pore formed by...
The protein nanopore <i>Mycobacteria smegmatis</i> porin A (MspA), can be used to sense individual n...
Single molecule measurements of DNA transport through a nanopore We examined the voltage-driven move...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
It has been theoretically suggested and experimentally demonstrated that fast and low-cost sequencin...
AbstractSequencing DNA in a synthetic solid-state nanopore is potentially a low-cost and high-throug...
AbstractEach species from bacteria to human has a distinct genetic fingerprint. Therefore, a mechani...
ABSTRACT Each species from bacteria to human has a distinct genetic fingerprint. Therefore, a mechan...
We study the electrophoretic transport of single-stranded RNA molecules through 1.5-nm-wide pores of...
Solid-state nanopores have emerged as possible candidates for next-generation DNA sequencing devices...
A nanopore is the ultimate analytical tool. It can be used to detect DNA, RNA, oligonucleotides, and...