It is well known that common trivalent counter ions can induce DNA compaction or condensation but are unable to invert DNA surface charge in a normal aqueous solution. In the present study, we found that trivalent-hydrolysed metal ions (Fe3+, Al3+) are not only capable of inducing DNA condensation, but they also invert the electrophoretic mobility of DNA by electrophoretic light scattering and single molecular techniques. In comparison with neutral trivalent cations, hydrolysed metal ions such as Fe3+ can induce DNA condensation at a much lower concentration of cations, and its corresponding morphology of condensed DNA was directly observed by atomic force microscopy (AFM). The condensing and unravelling forces of DNA condensates were measu...
DNA conformational change and breakage induced by Cr(VI)-GSH interaction were characterized by the i...
AbstractThe presence of small numbers of multivalent ions in DNA-containing solutions results in str...
A new category of iron oxide nanoparticles (SAMNs, γ-Fe2O3) allows the intimate chemical and electri...
It is well known that common trivalent counter ions can induce DNA compaction or condensation but ar...
DNA condensation and charge inversion usually occur in solutions of multivalent counterions. In the ...
The interaction of DNA with Tris(1,10-phenanthroline) cobalt(III) was studied by means of atomic for...
The interaction between DNA and proteins is fundamentally important not only for basic research in b...
DNA conformation is strongly dependent on the valence of counterions in solution, and a valence of a...
Screening of charged particles by mobile ions in electrolytes is a major focus of such diverse field...
AbstractThe behavior of alkaline earth metal cations (Mg2+ and Ca2+) and transition metal cations (Z...
Cylindrical cell model Poisson-Boltzmann (P-B) calculations are used to evaluate the electrostatic c...
Highly polymerized herring testis DNA of the random nucleotide sequence has been studied in solution...
In the presence of multivalent cations, high molecular weight DNA undergoes a dramatic condensation ...
Various kinds of roles of the water molecules in the electronic states of the complexes of metal ion...
DNA compaction and charge neutralization in a mixing counterion solution involves competitive and co...
DNA conformational change and breakage induced by Cr(VI)-GSH interaction were characterized by the i...
AbstractThe presence of small numbers of multivalent ions in DNA-containing solutions results in str...
A new category of iron oxide nanoparticles (SAMNs, γ-Fe2O3) allows the intimate chemical and electri...
It is well known that common trivalent counter ions can induce DNA compaction or condensation but ar...
DNA condensation and charge inversion usually occur in solutions of multivalent counterions. In the ...
The interaction of DNA with Tris(1,10-phenanthroline) cobalt(III) was studied by means of atomic for...
The interaction between DNA and proteins is fundamentally important not only for basic research in b...
DNA conformation is strongly dependent on the valence of counterions in solution, and a valence of a...
Screening of charged particles by mobile ions in electrolytes is a major focus of such diverse field...
AbstractThe behavior of alkaline earth metal cations (Mg2+ and Ca2+) and transition metal cations (Z...
Cylindrical cell model Poisson-Boltzmann (P-B) calculations are used to evaluate the electrostatic c...
Highly polymerized herring testis DNA of the random nucleotide sequence has been studied in solution...
In the presence of multivalent cations, high molecular weight DNA undergoes a dramatic condensation ...
Various kinds of roles of the water molecules in the electronic states of the complexes of metal ion...
DNA compaction and charge neutralization in a mixing counterion solution involves competitive and co...
DNA conformational change and breakage induced by Cr(VI)-GSH interaction were characterized by the i...
AbstractThe presence of small numbers of multivalent ions in DNA-containing solutions results in str...
A new category of iron oxide nanoparticles (SAMNs, γ-Fe2O3) allows the intimate chemical and electri...