In this study, we report the realization of drug-loaded smart magnetic nanocarriers constituted by superparamagnetic iron oxide nanoparticles encapsulated in a dual pH- and temperature-responsive poly (N-vinylcaprolactam-co-acrylic acid) copolymer to achieve highly controlled drug release and localized magnetic hyperthermia. The magnetic core was constituted by flower-like magnetite nanoparticles with a size of 16.4 nm prepared by the polyol approach, with good saturation magnetization and a high specific absorption rate. The core was encapsulated in poly (N-vinylcaprolactam-co-acrylic acid) obtaining magnetic nanocarriers that revealed reversible hydration/dehydration transition at the acidic condition and/or at temperatures above physiolo...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
International audienceHybrid nanogels, composed of thermoresponsive polymers and superparamagnetic n...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
Magnetic nanocarriers have attracted increasing attention for multimodal cancer therapy due to the p...
There are huge demands on multifunctional nanocarriers to be used in nanomedicine. Herein, we presen...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...
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...
Dual stimuli pH and temperature-responsive nanohydrogels based on poly(N-isopropylacrylamide)-chitos...
In this work, we have prepared water-soluble superparamgnetic iron oxide nanoparticles (SPIONs) coat...
With the onset of hyperthermia and their advantage in increasing vascular perfusion and permeability...
The design and development of water dispersible, pH responsive peptide mimic shell cross-linked magn...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
International audienceHybrid nanogels, composed of thermoresponsive polymers and superparamagnetic n...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
International audienceThis study reports on the development of thermoresponsive core/shell magnetic ...
Magnetic nanocarriers have attracted increasing attention for multimodal cancer therapy due to the p...
There are huge demands on multifunctional nanocarriers to be used in nanomedicine. Herein, we presen...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...
We report a procedure to grow thermo-responsive polymer shells at the surface of magnetic nanocarrie...
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...
Dual stimuli pH and temperature-responsive nanohydrogels based on poly(N-isopropylacrylamide)-chitos...
In this work, we have prepared water-soluble superparamgnetic iron oxide nanoparticles (SPIONs) coat...
With the onset of hyperthermia and their advantage in increasing vascular perfusion and permeability...
The design and development of water dispersible, pH responsive peptide mimic shell cross-linked magn...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
International audienceHybrid nanogels, composed of thermoresponsive polymers and superparamagnetic n...
Herein, we prepare nanohybrids by incorporating iron oxide nanocubes (cubic-IONPs) within a thermore...