Herein, we present the synthesis and application of a new type of graphene-based magnetic and plasmonic nanocomposite for magnetic-field-assisted drug delivery and chemo-photothermal synergistic therapy. The nanocomposites were prepared via conjugation of the PEGylated Fe2O3@Au core/shell nanoparticles (Fe2O3@Au NPs) with reduced graphene oxide (rGO). The hybrid nanostructures (rGO-Fe2O3@Au NPs) are superparamagnetic and show great photothermal conversion efficiency under 808 nm near-infrared (NIR) laser irradiation and high drug loading ability (1.0 mg mg(-1)). MTT cell viability assay demonstrates that the chemotherapeutic drug, doxorubicin loaded rGO-Fe2O3@Au NPs (DOX-rGO-Fe2O3@Au NPs) have synergistic interaction between photothermal th...
Graphene, which is a unique 2D nanomaterials has received widespread attention for photothermal ther...
Magnetite nanographene oxide has exhibited great potential in drug delivery and photothermal therapy...
Nanographene oxide (NGO) are highly suitable to be the shells of inorganic nanomaterials to enhance ...
We present the synthesis and application of a new type of dual magnetic and plasmonic nanostructures...
The combination of radiotherapy (RT) and photothermal therapy (PTT) has been considered an attractiv...
The integration of multiple therapeutic and diagnostic functions into a single nanoplatform for imag...
Magneto-plasmonic nanocomposites can possess properties inherent to both individual components (iron...
Combining different therapies into a single nanomaterial platform is a promising approach for achiev...
Combining different therapies into a single nanomaterial platform is a promising approach for achiev...
In this work, a nanoscale reduced graphene oxide-iron oxide nanoparticle (RGO-IONP) complex is nonco...
We present the synthesis and application of a new type of dual magnetic and plasmonic nanostructures...
Multifunctional hybrid nanomaterials with enhanced therapeutic efficiency at physiologically safe do...
A multifunctional targeted drug delivery platform (CDHA–MGO) has been successfully constructed...
Success in disease therapy depends on precision medicines, where development of formulations with di...
Minimal invasive phototherapy utilising near-infrared (NIR) laser to generate local reactive oxygen ...
Graphene, which is a unique 2D nanomaterials has received widespread attention for photothermal ther...
Magnetite nanographene oxide has exhibited great potential in drug delivery and photothermal therapy...
Nanographene oxide (NGO) are highly suitable to be the shells of inorganic nanomaterials to enhance ...
We present the synthesis and application of a new type of dual magnetic and plasmonic nanostructures...
The combination of radiotherapy (RT) and photothermal therapy (PTT) has been considered an attractiv...
The integration of multiple therapeutic and diagnostic functions into a single nanoplatform for imag...
Magneto-plasmonic nanocomposites can possess properties inherent to both individual components (iron...
Combining different therapies into a single nanomaterial platform is a promising approach for achiev...
Combining different therapies into a single nanomaterial platform is a promising approach for achiev...
In this work, a nanoscale reduced graphene oxide-iron oxide nanoparticle (RGO-IONP) complex is nonco...
We present the synthesis and application of a new type of dual magnetic and plasmonic nanostructures...
Multifunctional hybrid nanomaterials with enhanced therapeutic efficiency at physiologically safe do...
A multifunctional targeted drug delivery platform (CDHA–MGO) has been successfully constructed...
Success in disease therapy depends on precision medicines, where development of formulations with di...
Minimal invasive phototherapy utilising near-infrared (NIR) laser to generate local reactive oxygen ...
Graphene, which is a unique 2D nanomaterials has received widespread attention for photothermal ther...
Magnetite nanographene oxide has exhibited great potential in drug delivery and photothermal therapy...
Nanographene oxide (NGO) are highly suitable to be the shells of inorganic nanomaterials to enhance ...