The transport of a charged adsorbate biomolecule in a porous polymeric adsorbent medium and its adsorption onto the covalently immobilized ligands have been modeled and investigated using molecular dynamics modeling and simulations as the third part of a novel fundamental methodology developed for studying ion-exchange chromatography based bioseparations. To overcome computational challenges, a novel simulation approach is devised where appropriate atomistic and coarse grain models are employed simultaneously and the transport of the adsorbate is characterized through a number of locations representative of the progress of the transport process. The adsorbate biomolecule for the system studied in this work changes shape, orientation, and la...
Most chromatographic purification techniques for macromolecuies (biopolymers) operate on the princip...
Multiscale simulation is used to study the adsorption of lysozyme onto ion exchangers obtained by gr...
A general model is presented and used to predict the dynamic behavior of the adsorption, wash, and e...
Ion-exchange chromatography employing porous adsorbent particles or monoliths in which charged ligan...
Molecular dynamics modeling and simulations are employed to study the effects of counter-ions on the...
A systematic methodology based on molecular dynamics (MD) modeling and simulation was developed to s...
Molecular dynamics modeling and simulations are employed to study the immobilization of ligands on t...
A molecular dynamics modeling and simulation approach is presented and employed to construct porous ...
An analysis based on a macroscopic continuum rigorous model of the conditions necessary for the deve...
Recent interest in biomolecule adsorption tomaterial surface has grown rapidly, but little is unders...
Significant increases in the separation of bioactive molecules by using ion-exchange chromatography ...
The conformations, the values of the lateral transport coefficient of a charged biomolecule (desmopr...
Recently published results determined from molecular dynamics (MD) modeling and simulation studies h...
This work deals with experimentally determined binding orientations of lysozyme on different chromat...
The construction and use of nonflat agarose surfaces in a simulation box, together with the employme...
Most chromatographic purification techniques for macromolecuies (biopolymers) operate on the princip...
Multiscale simulation is used to study the adsorption of lysozyme onto ion exchangers obtained by gr...
A general model is presented and used to predict the dynamic behavior of the adsorption, wash, and e...
Ion-exchange chromatography employing porous adsorbent particles or monoliths in which charged ligan...
Molecular dynamics modeling and simulations are employed to study the effects of counter-ions on the...
A systematic methodology based on molecular dynamics (MD) modeling and simulation was developed to s...
Molecular dynamics modeling and simulations are employed to study the immobilization of ligands on t...
A molecular dynamics modeling and simulation approach is presented and employed to construct porous ...
An analysis based on a macroscopic continuum rigorous model of the conditions necessary for the deve...
Recent interest in biomolecule adsorption tomaterial surface has grown rapidly, but little is unders...
Significant increases in the separation of bioactive molecules by using ion-exchange chromatography ...
The conformations, the values of the lateral transport coefficient of a charged biomolecule (desmopr...
Recently published results determined from molecular dynamics (MD) modeling and simulation studies h...
This work deals with experimentally determined binding orientations of lysozyme on different chromat...
The construction and use of nonflat agarose surfaces in a simulation box, together with the employme...
Most chromatographic purification techniques for macromolecuies (biopolymers) operate on the princip...
Multiscale simulation is used to study the adsorption of lysozyme onto ion exchangers obtained by gr...
A general model is presented and used to predict the dynamic behavior of the adsorption, wash, and e...