The unique physical properties of the superparamagnetic nanoparticles (SPIONs) have made them candidates of choice in nanomedicine especially for diagnostic imaging, therapeutic applications and drug delivery based systems. In this study, superparamagnetic Fe3O4 NPs were synthesized and functionalized with a biocompatible thermoresponsive copolymer to obtain temperature responsive core/shell NPs. The ultimate goal of this work is to build a drug delivery system able to release anticancer drugs in the physiological temperatures range. The core/shell NPs were first synthesized and their chemical, physical, magnetic and thermo-responsive properties where fully characterized in a second step. The lower critical solution temperature (LCST) of th...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
Multifunctional drug delivery systems incorporated with stimuli-sensitive drug release, magnetic nan...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...
The unique physical properties of the superparamagnetic nanoparticles (SPIONs) have made them candid...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
International audienceThe preparation of responsive superparamagnetic iron oxide (SPIO) nanoparticle...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
In this study, we report the realization of drug-loaded smart magnetic nanocarriers constituted by s...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
Magnetic nanoparticles, MNPs, combined with stimuli-responsive polymers show potential to enhance th...
Magnetic nanoparticles, MNPs, combined with stimuli-responsive polymers show potential to enhance th...
Self-assembled nanocapsules containing a hydrophilic core and a crosslinked yet thermosensitive shel...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...
Polymer coating has drawn increasing attention as a leading strategy to overcome the drawbacks of su...
In this work, we report the synthesis of functionalized superparamagnetic iron oxide nanoparticles (...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
Multifunctional drug delivery systems incorporated with stimuli-sensitive drug release, magnetic nan...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...
The unique physical properties of the superparamagnetic nanoparticles (SPIONs) have made them candid...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
International audienceThe preparation of responsive superparamagnetic iron oxide (SPIO) nanoparticle...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
In this study, we report the realization of drug-loaded smart magnetic nanocarriers constituted by s...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
Magnetic nanoparticles, MNPs, combined with stimuli-responsive polymers show potential to enhance th...
Magnetic nanoparticles, MNPs, combined with stimuli-responsive polymers show potential to enhance th...
Self-assembled nanocapsules containing a hydrophilic core and a crosslinked yet thermosensitive shel...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...
Polymer coating has drawn increasing attention as a leading strategy to overcome the drawbacks of su...
In this work, we report the synthesis of functionalized superparamagnetic iron oxide nanoparticles (...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
Multifunctional drug delivery systems incorporated with stimuli-sensitive drug release, magnetic nan...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...