International audienceUnderstanding the relation between the structure and the reactivity of nanomaterials in the organism is a crucial step towards efficient and safe biomedical applications. The multi-scale approach reported here, allows following the magnetic and structural transformations of multicore maghemite nanoflowers in a medium mimicking intracellular lysosomal environment. By confronting atomic-scale and macroscopic information on the biodegradation of these complex nanostuctures, we can unravel the mechanisms involved in the critical alterations of their hyperthermic power and their Magnetic Resonance imaging T1 and T2 contrast effect. This transformation of multicore nanoparticles with outstanding magnetic properties into poor...
International audienceThe nanoparticles produced by magnetotactic bacteria, called magnetosomes, are...
International audienceSafe implementation of nanotechnology and nanomedicine requires an in-depth un...
International audienceQuantitative studies of the long-term fate of iron oxide nanoparticles inside ...
International audienceUnderstanding the relation between the structure and the reactivity of nanomat...
International audienceMultifunctional nanoparticles such as magneto‐plasmonic nanohybrids are rising...
International audienceThe long term outcome of nanoparticles in the organism is one of the most impo...
International audienceThe long-term fate of nanomaterials in biological environment represents a cri...
To successfully develop biomedical applications for magnetic nanoparticles, it is imperative that th...
Iron issues have been linked to a rising variety of refractory diseases, raising doubts about whethe...
International audienceQuantitative studies of the long-term fate of iron oxide nanoparticles inside ...
International audienceThe nanoparticles produced by magnetotactic bacteria, called magnetosomes, are...
International audienceSafe implementation of nanotechnology and nanomedicine requires an in-depth un...
International audienceQuantitative studies of the long-term fate of iron oxide nanoparticles inside ...
International audienceUnderstanding the relation between the structure and the reactivity of nanomat...
International audienceMultifunctional nanoparticles such as magneto‐plasmonic nanohybrids are rising...
International audienceThe long term outcome of nanoparticles in the organism is one of the most impo...
International audienceThe long-term fate of nanomaterials in biological environment represents a cri...
To successfully develop biomedical applications for magnetic nanoparticles, it is imperative that th...
Iron issues have been linked to a rising variety of refractory diseases, raising doubts about whethe...
International audienceQuantitative studies of the long-term fate of iron oxide nanoparticles inside ...
International audienceThe nanoparticles produced by magnetotactic bacteria, called magnetosomes, are...
International audienceSafe implementation of nanotechnology and nanomedicine requires an in-depth un...
International audienceQuantitative studies of the long-term fate of iron oxide nanoparticles inside ...