Magnetic particle hyperthermia, in which colloidal nanostructures are exposed to an alternating magnetic field, is a promising approach to cancer therapy. Unfortunately, the clinical efficacy of hyperthermia has not yet been optimized. Consequently, routes to improve magnetic particle hyperthermia, such as designing hybrid structures comprised of different phase materials, are actively pursued. Here, we demonstrate enhanced hyperthermia efficiency in relatively large spherical Fe/Fe-oxide core-shell nanoparticles through the manipulation of interactions between the core and shell phases. Experimental results on representative samples with diameters in the range 30-80 nm indicate a direct correlation of hysteresis losses to the observed heat...
Biomedical nanomagnetic carriers are getting a higher impact in therapy and diagnosis schemes while ...
Nanoparticles for magnetic hyperthermia pose significant constraints in their size and composition t...
Progress in the design of nanoscale magnets for localized hyperthermia cancer therapy has been large...
Magnetic particle hyperthermia, in which colloidal nanostructures are exposed to an alternating magn...
Magnetic nanoparticles have an important role as heat generators in magnetic fluid hyperthermia, a t...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
Progress in the design of nanoscale magnets for localized hyperthermia cancer therapy has been large...
Magnetic nanoparticle-mediated hyperthermia is a very promising therapy for cancer treatment. In thi...
Magnetic hyperthermia (MH) based on magnetic nanoparticles (MNPs) is a promising adjuvant therapy fo...
Magnetic hyperthermia for cancer treatment has gained significant attention in recent years, due to...
Magnetic nanoparticle-mediated hyperthermia is a very promising therapy for cancer treatment. In thi...
© 2021 The Authors. Published by American Chemical Society.Magnetic nanoparticles have an important ...
Magnetic nanoparticles can generate heat when exposed to an alternating magnetic field. Their heatin...
AbstractMagnetic iron oxide nanoparticles (IONPs) are heavily explored as diagnostic and therapeutic...
Biomedical nanomagnetic carriers are getting a higher impact in therapy and diagnosis schemes while ...
Nanoparticles for magnetic hyperthermia pose significant constraints in their size and composition t...
Progress in the design of nanoscale magnets for localized hyperthermia cancer therapy has been large...
Magnetic particle hyperthermia, in which colloidal nanostructures are exposed to an alternating magn...
Magnetic nanoparticles have an important role as heat generators in magnetic fluid hyperthermia, a t...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
The performance of magnetic nanoparticles is intimately entwined with their structure, mean size and...
Progress in the design of nanoscale magnets for localized hyperthermia cancer therapy has been large...
Magnetic nanoparticle-mediated hyperthermia is a very promising therapy for cancer treatment. In thi...
Magnetic hyperthermia (MH) based on magnetic nanoparticles (MNPs) is a promising adjuvant therapy fo...
Magnetic hyperthermia for cancer treatment has gained significant attention in recent years, due to...
Magnetic nanoparticle-mediated hyperthermia is a very promising therapy for cancer treatment. In thi...
© 2021 The Authors. Published by American Chemical Society.Magnetic nanoparticles have an important ...
Magnetic nanoparticles can generate heat when exposed to an alternating magnetic field. Their heatin...
AbstractMagnetic iron oxide nanoparticles (IONPs) are heavily explored as diagnostic and therapeutic...
Biomedical nanomagnetic carriers are getting a higher impact in therapy and diagnosis schemes while ...
Nanoparticles for magnetic hyperthermia pose significant constraints in their size and composition t...
Progress in the design of nanoscale magnets for localized hyperthermia cancer therapy has been large...