In buffers containing selected transition metal salts, DNA binds to mica tightly enough to be directly imaged in the buffer in the atomic force microscope (AFM, also known as scanning force microscope). The binding of DNA to mica, as measured by AFM-imaging, is correlated with the radius of the transition metal cation. The transition metal cations that effectively bind DNA to mica are Ni(II), Co(II), and Zn(II), which have ionic radii from 0.69 to 0.74 A. In Mn(II), ionic radius 0.82 A, DNA binds weakly to mica. In Cd(II) and Hg(II), respective ionic radii of 0.97 and 1.1 A, DNA does not bind to mica well enough to be imaged with the AFM. These results may to relate to how large a cation can fit into the cavities above the recessed hydroxyl...
Various methods for the deposition of deoxyribonucleic acid (DNA) molecules on mica are investigated...
Various methods for the deposition of deoxyribonucleic acid (DNA) molecules on mica are investigated...
For over 25 years, imaging of DNA by atomic force microscopy has been intensely pursued. Ideally, su...
In buffers containing selected transition metal salts, DNA binds to mica tightly enough to be direct...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
The deposition of DNA molecules on mica is driven and controlled by the ionic densities around DNA a...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
The deposition of DNA molecules on mica is driven and controlled by the ionic densities around DNA a...
As counterions of DNA on mica, Mg2+, Ca2+, Sr2+ and Ba2+ were used for,clarifying whether DNA molecu...
A simple, controllable and effective sample preparation method was established for atomic force micr...
This paper explores suitable conditions for the imaging of DNA molecules by atomic force microscope ...
Progress towards rapid and simple characterization of biomolecular samples by scanning probe microsc...
Progress towards rapid and simple characterization of biomolecular samples by scanning probe microsc...
Various methods for the deposition of deoxyribonucleic acid (DNA) molecules on mica are investigated...
Various methods for the deposition of deoxyribonucleic acid (DNA) molecules on mica are investigated...
For over 25 years, imaging of DNA by atomic force microscopy has been intensely pursued. Ideally, su...
In buffers containing selected transition metal salts, DNA binds to mica tightly enough to be direct...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
AbstractThe adsorption of DNA molecules onto a flat mica surface is a necessary step to perform atom...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
The deposition of DNA molecules on mica is driven and controlled by the ionic densities around DNA a...
International audienceDNA processing by site-specific proteins on surface remains a challenging issu...
The deposition of DNA molecules on mica is driven and controlled by the ionic densities around DNA a...
As counterions of DNA on mica, Mg2+, Ca2+, Sr2+ and Ba2+ were used for,clarifying whether DNA molecu...
A simple, controllable and effective sample preparation method was established for atomic force micr...
This paper explores suitable conditions for the imaging of DNA molecules by atomic force microscope ...
Progress towards rapid and simple characterization of biomolecular samples by scanning probe microsc...
Progress towards rapid and simple characterization of biomolecular samples by scanning probe microsc...
Various methods for the deposition of deoxyribonucleic acid (DNA) molecules on mica are investigated...
Various methods for the deposition of deoxyribonucleic acid (DNA) molecules on mica are investigated...
For over 25 years, imaging of DNA by atomic force microscopy has been intensely pursued. Ideally, su...