DNA hybridization onto DNA-functionalized nanoparticle surfaces (e.g., in the form of a spherical nucleic acid (SNA)) is known to be enhanced relative to hybridization free in solution. Surprisingly, via isothermal titration calorimetry, we reveal that this enhancement is enthalpically, as opposed to entropically, dominated by ∼20 kcal/mol. Coarse-grained molecular dynamics simulations suggest that the observed enthalpic enhancement results from structurally confining the DNA on the nanoparticle surface and preventing it from adopting enthalpically unfavorable conformations like those observed in the solution case. The idea that structural confinement leads to the formation of energetically more stable duplexes is evaluated by decreasing th...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selective hybridization of DNA is of key importance for many practical applications such as gene...
The hybridization of free oligonucleotides to densely packed, oriented arrays of DNA modifying the s...
The design of microarrays rely on studies geared towards sequence-specific recognition between compl...
The design of microarrays rely on studies geared towards sequence-specific recognition between compl...
The structure and stability of biomolecules under molecular crowding conditions are of interest beca...
In the present study, we use the fluorescent DNA base analog tC\ue5 to investigate the thermal stabi...
A locked nucleic acid (LNA) monomer is a conformationally restricted nucleotide analogue exhibiting ...
The thermal stabilities of double-stranded DNA hybrids immobilized on gold surfaces are shown to be ...
Microcalorimetric studies of DNA duplexes and their component single strands showed that association...
Microcalorimetric studies of DNA duplexes and their component single strands showed that association...
Hybridization of single-stranded DNA immobilized on the surface of gold nanoparticles (GNPs) into do...
In the present study, we use the fluorescent DNA base analog tC° to investigate the thermal stabilit...
A molecular dynamics simulation approach was applied for the prediction of the thermal stability of ...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selective hybridization of DNA is of key importance for many practical applications such as gene...
The hybridization of free oligonucleotides to densely packed, oriented arrays of DNA modifying the s...
The design of microarrays rely on studies geared towards sequence-specific recognition between compl...
The design of microarrays rely on studies geared towards sequence-specific recognition between compl...
The structure and stability of biomolecules under molecular crowding conditions are of interest beca...
In the present study, we use the fluorescent DNA base analog tC\ue5 to investigate the thermal stabi...
A locked nucleic acid (LNA) monomer is a conformationally restricted nucleotide analogue exhibiting ...
The thermal stabilities of double-stranded DNA hybrids immobilized on gold surfaces are shown to be ...
Microcalorimetric studies of DNA duplexes and their component single strands showed that association...
Microcalorimetric studies of DNA duplexes and their component single strands showed that association...
Hybridization of single-stranded DNA immobilized on the surface of gold nanoparticles (GNPs) into do...
In the present study, we use the fluorescent DNA base analog tC° to investigate the thermal stabilit...
A molecular dynamics simulation approach was applied for the prediction of the thermal stability of ...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selectivity of DNA recognition inspires an elegant protocol for designing versatile nanoparticle...
The selective hybridization of DNA is of key importance for many practical applications such as gene...