Novel superparamagnetic surface-active maghemite nanoparticles (SAMNs) characterized by a diameter of 10 +/- 2 nm were modified with bovine serum amine oxidase, which used rhodamine B isothiocyanate (RITC) adduct as a fluorescent spacer-arm. A fluorescent and magnetically drivable adduct comprised of bovine serum copper-containing amine oxidase (SAMN-RITC-BSAO) that immobilized on the surface of specifically functionalized magnetic nanoparticles was developed. The multifunctional nanomaterial was characterized using transmission electron microscopy, infrared spectroscopy, mass spectrometry, and activity measurements. The results of this study demonstrated that bare magnetic nanoparticles form stable colloidal suspensions in aqueous solution...
A low temperature polyol process, based on glycolaldehyde mediated partial reduction of FeCl3 center...
Nanoparticles containing magnetic materials, such as magnetite (Fe3O4), are particularly useful for ...
Water solubility and surface functionalization of magnetic nanoparticles are crucial for bioapplicat...
Novel superparamagnetic maghemite nanoparticles (SAMNs, surface active maghemite nanoparticles), cha...
Surface active maghemite nanoparticles (SAMNs) represent a new class of naked maghemite n...
Superparamagnetic nanoparticles (20-40 nm) of maghemite, γ-Fe 2O 3, with well-defined stoichiometric...
Protein-nanoparticle hybrids represent entities characterized by emerging biological properties that...
Superparamagnetic nanoparticles (20–40 nm) of maghemite, c-Fe2O3, with well-defined stoichiometric ...
The preservation of enzymatic activity is a fundamental requirement for exploiting hybrid nano-bio-c...
Novel surface active maghemite nanoparticles (SAMNs) possessing peculiar colloidal properties and su...
Recombinant aminoaldehyde dehydrogenase from tomato (LeAMADH1) was used as a model protein for study...
Dichromate binds to surface-active maghemite nanoparticles (SAMNs) to form a stable core\u2013shell ...
Dichromate binds to surface-active maghemite nanoparticles (SAMNs) to form a stable core-shell nanos...
Novel surface active maghemite nanoparticles (SAMNs) possessing peculiar colloidal properties and su...
Nanozymes with enzyme-mimicking catalytic activity and unique functions have stimulated increasing i...
A low temperature polyol process, based on glycolaldehyde mediated partial reduction of FeCl3 center...
Nanoparticles containing magnetic materials, such as magnetite (Fe3O4), are particularly useful for ...
Water solubility and surface functionalization of magnetic nanoparticles are crucial for bioapplicat...
Novel superparamagnetic maghemite nanoparticles (SAMNs, surface active maghemite nanoparticles), cha...
Surface active maghemite nanoparticles (SAMNs) represent a new class of naked maghemite n...
Superparamagnetic nanoparticles (20-40 nm) of maghemite, γ-Fe 2O 3, with well-defined stoichiometric...
Protein-nanoparticle hybrids represent entities characterized by emerging biological properties that...
Superparamagnetic nanoparticles (20–40 nm) of maghemite, c-Fe2O3, with well-defined stoichiometric ...
The preservation of enzymatic activity is a fundamental requirement for exploiting hybrid nano-bio-c...
Novel surface active maghemite nanoparticles (SAMNs) possessing peculiar colloidal properties and su...
Recombinant aminoaldehyde dehydrogenase from tomato (LeAMADH1) was used as a model protein for study...
Dichromate binds to surface-active maghemite nanoparticles (SAMNs) to form a stable core\u2013shell ...
Dichromate binds to surface-active maghemite nanoparticles (SAMNs) to form a stable core-shell nanos...
Novel surface active maghemite nanoparticles (SAMNs) possessing peculiar colloidal properties and su...
Nanozymes with enzyme-mimicking catalytic activity and unique functions have stimulated increasing i...
A low temperature polyol process, based on glycolaldehyde mediated partial reduction of FeCl3 center...
Nanoparticles containing magnetic materials, such as magnetite (Fe3O4), are particularly useful for ...
Water solubility and surface functionalization of magnetic nanoparticles are crucial for bioapplicat...