In this work, magnetic functionality was introduced to cross-linked acrylamide-based particles via the in situ coprecipitation of iron oxide nanoparticles within the hydrogel particle interior. Cibacron Blue F3G-A was then incorporated onto the magnetic hydrogel scaffold to facilitate the harvest of targeted protein species. The dye-loaded magnetic particles were physically characterized, and their protein sequestration performance was investigated. The results of these studies indicated that dye-loaded magnetic particles sequestered a greater amount of lower molecular weight proteins from the test solution than was achieved using reference particles, dye-loaded cross-linked N-isopropylacrylamide-based core-shell particles. This difference ...
We demonstrate the successful construction of fluorescently labeled magnetic antibody-like nanoparti...
Magnetic silica nanospheres with immobilized metal ligands were prepared for the separation of prote...
The objective of this study was to develop thin, biocompatible, and biofunctional hydrogel-coated sm...
In this work, magnetic functionality was introduced to cross-linked acrylamide-based particles via t...
The analysis of low abundance and low molecular weight biomolecules is challenging due to their labi...
BACKGROUND: New magnetic carrier separation technologies, capable of treating dilute solutions in la...
In this study, mono-sized anion-exchange microspheres with polyglycidylmethacrylate were engineered ...
There is an incentive to introduce affinity separation techniques earlier in downstream processing d...
Non-porous micrometer-sized magnetic polymer microspheres were prepared for affinity protein adsorpt...
Magnetic nanoparticles (MPs) were synthesized using the co-precipitation method, with methyl acrylic...
Magnetic nanoparticles (MNPs) are known for the unique properties conferred by their small size and ...
Iron oxide γ-Fe2O3 magnetic nanoparticles (MNPs) were fabricated by laser target evaporation te...
Magnetic microsphere comprises a magnetically responsive metal or metal oxide core surrounded by a p...
Magnetic silica-coated magnetite (Fe(3)O(4)) sub-microspheres with immobilized metal-affinity ligand...
Micrometer-sized superparamagnetic poly(styrene-glycidyl methacrylate)/Fe3O4 spheres were synthesize...
We demonstrate the successful construction of fluorescently labeled magnetic antibody-like nanoparti...
Magnetic silica nanospheres with immobilized metal ligands were prepared for the separation of prote...
The objective of this study was to develop thin, biocompatible, and biofunctional hydrogel-coated sm...
In this work, magnetic functionality was introduced to cross-linked acrylamide-based particles via t...
The analysis of low abundance and low molecular weight biomolecules is challenging due to their labi...
BACKGROUND: New magnetic carrier separation technologies, capable of treating dilute solutions in la...
In this study, mono-sized anion-exchange microspheres with polyglycidylmethacrylate were engineered ...
There is an incentive to introduce affinity separation techniques earlier in downstream processing d...
Non-porous micrometer-sized magnetic polymer microspheres were prepared for affinity protein adsorpt...
Magnetic nanoparticles (MPs) were synthesized using the co-precipitation method, with methyl acrylic...
Magnetic nanoparticles (MNPs) are known for the unique properties conferred by their small size and ...
Iron oxide γ-Fe2O3 magnetic nanoparticles (MNPs) were fabricated by laser target evaporation te...
Magnetic microsphere comprises a magnetically responsive metal or metal oxide core surrounded by a p...
Magnetic silica-coated magnetite (Fe(3)O(4)) sub-microspheres with immobilized metal-affinity ligand...
Micrometer-sized superparamagnetic poly(styrene-glycidyl methacrylate)/Fe3O4 spheres were synthesize...
We demonstrate the successful construction of fluorescently labeled magnetic antibody-like nanoparti...
Magnetic silica nanospheres with immobilized metal ligands were prepared for the separation of prote...
The objective of this study was to develop thin, biocompatible, and biofunctional hydrogel-coated sm...