The atomic force microscopy has been used to analyze the immobilization of single stranded DNA on poly-L-lysine-coated glass and subsequent hybridization with complimentary DNA with the Z-threshold parameter and fractal analysis methods. The poly-L-lysine layer, which has a thickness of approximately 7 nm, presents nano-defects that could be critical for DNA immobilization by acting as a nucleation sites for ssDNA and subsequently for dsDNA aggregates. The Z-threshold for the dsDNA aggregates is much larger than for ssDNA, but the statistical fractal dimension is very similar, suggesting a conformal increase of the dimensions of the dsDNA aggregates mainly in the Z-direction, due to an effective ssDNA-ccDNA molecular recognition. This study...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
Single-stranded SO-mer, 100-mer, and 150-mer DNAs were immobilized on a surface, and force-based ato...
The atomic force microscopy has been used to analyze the immobilization of single stranded DNA on po...
Atomic force microscopy is used to analyze the immobilization of single-stranded DNA (ssDNA) on poly...
Atomic force microscopy is used to analyze the immobilization of single-stranded DNA (ssDNA) on poly...
The immobilization and hybridization processes of DNA strands on poly-l-lysine (PL) covered surfaces...
This study reports on the evaluation of the nanotopographies of DNA functionalized polymer surfaces,...
The demand for polymer-based DNA microarrays will increase because of their cost-effectiveness, bioc...
Although most in vivo biomolecular recognition occurs in solution, in many practical situations (e.g...
In a recent trend of micro- and nano-array technologies, polymers are gaining preference over tradit...
The main subject of the present thesis is the experimental study of the scaling properties of DNA kn...
Analyses of individual biomolecules, like DNA, or DNA–protein complexes, via atomic force microscop...
To bring real-world applications of DNA nanostructures to fruition, advanced microscopy techniques a...
The self-assembled structures possess superior stability, biocompatibility and mechanical strength, ...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
Single-stranded SO-mer, 100-mer, and 150-mer DNAs were immobilized on a surface, and force-based ato...
The atomic force microscopy has been used to analyze the immobilization of single stranded DNA on po...
Atomic force microscopy is used to analyze the immobilization of single-stranded DNA (ssDNA) on poly...
Atomic force microscopy is used to analyze the immobilization of single-stranded DNA (ssDNA) on poly...
The immobilization and hybridization processes of DNA strands on poly-l-lysine (PL) covered surfaces...
This study reports on the evaluation of the nanotopographies of DNA functionalized polymer surfaces,...
The demand for polymer-based DNA microarrays will increase because of their cost-effectiveness, bioc...
Although most in vivo biomolecular recognition occurs in solution, in many practical situations (e.g...
In a recent trend of micro- and nano-array technologies, polymers are gaining preference over tradit...
The main subject of the present thesis is the experimental study of the scaling properties of DNA kn...
Analyses of individual biomolecules, like DNA, or DNA–protein complexes, via atomic force microscop...
To bring real-world applications of DNA nanostructures to fruition, advanced microscopy techniques a...
The self-assembled structures possess superior stability, biocompatibility and mechanical strength, ...
AbstractAtomic force microscopy (AFM) can be used to probe the mechanics of molecular recognition be...
DNA nanotechnology has developed a versatile set of methods to utilise DNA self-assembly for the bot...
Single-stranded SO-mer, 100-mer, and 150-mer DNAs were immobilized on a surface, and force-based ato...