We have developed a novel method to study collective behavior of multiple hybridized DNA chains by measuring the adhesion of DNA-coated micron-scale beads under hydrodynamic flow. Beads coated with single-stranded DNA probes are linked to surfaces coated with single target strands through DNA hybridization, and hydrodynamic shear forces are used to discriminate between strongly and weakly bound beads. The adhesiveness of microspheres depends on the strength of interaction between DNA chains on the bead and substrate surfaces, which is a function of the degree of DNA chain overlap, the fidelity of the match between hybridizing pairs, and other factors that affect the hybridization energy, such as the salt concentration in the hybridization b...
Experimental results show that specific binding between a ligand and surface immobilized receptor su...
The complexation behaviour of duplex linear DNA (negatively charged) with amidine functionalised sub...
We report the first use of a surface forces apparatus to study the hybridization of DNA. We study th...
AbstractWe have developed a novel method to study collective behavior of multiple hybridized DNA cha...
AbstractWe have developed a novel method to study collective behavior of multiple hybridized DNA cha...
We have developed a novel method to study collective behavior of multiple hybridized DNA chains by m...
Current microarray technology is using fluorescently modified oligonucleotides as the probe to label...
Current microarray technology is using fluorescently modified oligonucleotides as the probe to label...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
The merging of semiconductor technology with molecular biology has inspired DNA microarray developme...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
The merging of semiconductor technology with molecular biology has inspired DNA microarray developme...
Double-stranded DNA-grafted nanoparticles (dsDNA-NPs) exhibit a unique dispersion behavior under hig...
Recent experiments show that specific binding between a ligand and surface immobilized receptor, suc...
The specific binding of complementary DNA strands has been suggested as an ideal method for directin...
Experimental results show that specific binding between a ligand and surface immobilized receptor su...
The complexation behaviour of duplex linear DNA (negatively charged) with amidine functionalised sub...
We report the first use of a surface forces apparatus to study the hybridization of DNA. We study th...
AbstractWe have developed a novel method to study collective behavior of multiple hybridized DNA cha...
AbstractWe have developed a novel method to study collective behavior of multiple hybridized DNA cha...
We have developed a novel method to study collective behavior of multiple hybridized DNA chains by m...
Current microarray technology is using fluorescently modified oligonucleotides as the probe to label...
Current microarray technology is using fluorescently modified oligonucleotides as the probe to label...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
The merging of semiconductor technology with molecular biology has inspired DNA microarray developme...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
The merging of semiconductor technology with molecular biology has inspired DNA microarray developme...
Double-stranded DNA-grafted nanoparticles (dsDNA-NPs) exhibit a unique dispersion behavior under hig...
Recent experiments show that specific binding between a ligand and surface immobilized receptor, suc...
The specific binding of complementary DNA strands has been suggested as an ideal method for directin...
Experimental results show that specific binding between a ligand and surface immobilized receptor su...
The complexation behaviour of duplex linear DNA (negatively charged) with amidine functionalised sub...
We report the first use of a surface forces apparatus to study the hybridization of DNA. We study th...