International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therapeutic applications, the role of nanoparticle architecture has been poorly investigated. In this study, we demonstrate that the internal collective organization of multi-core iron oxide nanoparticles can modulate their magnetic properties in such a way as to critically enhance their hyperthermic efficiency and their MRI T1 and T2 contrast effect. Multi-core nanoparticles composed of maghemite cores were synthesized through a polyol approach, and subsequent electrostatic colloidal sorting was used to fractionate the suspensions by size and hence magnetic properties. We obtained stable suspensions of citrate-stabilized nanostructures ranging from...
Core/shell Fe3O4/gamma-Fe2O3 nanoparticles have been designed as a promising agent for magnetic hype...
Iron oxide nanoparticles (IOs) are intrinsically theranostic agents that could be used for magnetic ...
This thesis presents the development of novel formulations on the basis of magnetic iron oxide nanop...
International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therape...
International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therape...
International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therape...
International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therape...
In the pursuit of optimized magnetic nanostructures for diagnostic and therapeutic applications, the...
The controlled size and surface treatment of magnetic nanoparticles (NPs) make one-stage combination...
The controlled size and surface treatment of magnetic nanoparticles (NPs) make one-stage combination...
Iron oxide nanoparticles are formidable multifunctional systems capable of contrast enhancement in m...
Iron oxide nanoparticles are formidable multifunctional systems capable of contrast enhancement in m...
Tuning the magnetic properties of nanoparticles is a strategic goal to use them in the most effectiv...
Iron oxide nanoparticles (IOs) are intrinsically theranostic agents that could be used for magnetic ...
Nanomaterials are intensively researched both from the fundamental aspect due to new properties at t...
Core/shell Fe3O4/gamma-Fe2O3 nanoparticles have been designed as a promising agent for magnetic hype...
Iron oxide nanoparticles (IOs) are intrinsically theranostic agents that could be used for magnetic ...
This thesis presents the development of novel formulations on the basis of magnetic iron oxide nanop...
International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therape...
International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therape...
International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therape...
International audienceIn the pursuit of optimized magnetic nanostructures for diagnostic and therape...
In the pursuit of optimized magnetic nanostructures for diagnostic and therapeutic applications, the...
The controlled size and surface treatment of magnetic nanoparticles (NPs) make one-stage combination...
The controlled size and surface treatment of magnetic nanoparticles (NPs) make one-stage combination...
Iron oxide nanoparticles are formidable multifunctional systems capable of contrast enhancement in m...
Iron oxide nanoparticles are formidable multifunctional systems capable of contrast enhancement in m...
Tuning the magnetic properties of nanoparticles is a strategic goal to use them in the most effectiv...
Iron oxide nanoparticles (IOs) are intrinsically theranostic agents that could be used for magnetic ...
Nanomaterials are intensively researched both from the fundamental aspect due to new properties at t...
Core/shell Fe3O4/gamma-Fe2O3 nanoparticles have been designed as a promising agent for magnetic hype...
Iron oxide nanoparticles (IOs) are intrinsically theranostic agents that could be used for magnetic ...
This thesis presents the development of novel formulations on the basis of magnetic iron oxide nanop...