Iron oxide nanocrystals (IONCs) are appealing heat mediator nanoprobes in magnetic-mediated hyperthermia for cancer treatment. Here, specific absorption rate (SAR) values are reported for cube-shaped water-soluble IONCs prepared by a one-pot synthesis approach in a size range between 13 and 40 nm. The SAR values were determined as a function of frequency and magnetic field applied, also spanning technical conditions which are considered biomedically safe for patients. Among the different sizes tested, IONCs with an average diameter of 19 ± 3 nm had significant SAR values in clinical conditions and reached SAR values up to 2452 W/g<sub>Fe</sub> at 520 kHz and 29 kAm<sup>–1</sup>, which is one of the highest values so far reported for IONCs. ...
The use of magnetic nanoparticles in oncothermia has been investigated for decades, but an effective...
Several studies propose nanoparticles for tumor treatment, yet little is known about the fate of nan...
Functionalized iron oxide nanoparticles (IONPs) are increasingly being designed as a theranostic nan...
We report a highly reproducible route to synthesize iron oxide nanoparticles (IONPs) with control ov...
Multiple formulations of iron oxide nanoparticles (IONPs) have been proposed for enhancing contrast ...
The use of magnetic nanoparticles in oncothermia has been investigated for decades, but an effective...
Multiple formulations of iron oxide nanoparticles (IONPs) have been proposed for enhancing contrast ...
Magnetic and superparamagnetic colloids represent a versatile platform for the design of functional ...
[Purpose] Tumor cells can be effectively inactivated by heating mediated by magnetic nanoparticles. ...
Multiple formulations of iron oxide nanoparticles (IONPs) have been proposed for enhancing contrast ...
Efficient use of magnetic hyperthermia in clinical cancer treatment requires biocompatible magnetic ...
Purpose Tumor cells can be effectively inactivated by heating mediated by magnetic nanoparticles. Ho...
Magnetic nanoparticles are being developed for a wide range of biomedical applications. In particula...
Magnetic nanoparticle-mediated hyperthermia is a very promising therapy for cancer treatment. In thi...
Magnetic nanoparticle-mediated hyperthermia is a very promising therapy for cancer treatment. In thi...
The use of magnetic nanoparticles in oncothermia has been investigated for decades, but an effective...
Several studies propose nanoparticles for tumor treatment, yet little is known about the fate of nan...
Functionalized iron oxide nanoparticles (IONPs) are increasingly being designed as a theranostic nan...
We report a highly reproducible route to synthesize iron oxide nanoparticles (IONPs) with control ov...
Multiple formulations of iron oxide nanoparticles (IONPs) have been proposed for enhancing contrast ...
The use of magnetic nanoparticles in oncothermia has been investigated for decades, but an effective...
Multiple formulations of iron oxide nanoparticles (IONPs) have been proposed for enhancing contrast ...
Magnetic and superparamagnetic colloids represent a versatile platform for the design of functional ...
[Purpose] Tumor cells can be effectively inactivated by heating mediated by magnetic nanoparticles. ...
Multiple formulations of iron oxide nanoparticles (IONPs) have been proposed for enhancing contrast ...
Efficient use of magnetic hyperthermia in clinical cancer treatment requires biocompatible magnetic ...
Purpose Tumor cells can be effectively inactivated by heating mediated by magnetic nanoparticles. Ho...
Magnetic nanoparticles are being developed for a wide range of biomedical applications. In particula...
Magnetic nanoparticle-mediated hyperthermia is a very promising therapy for cancer treatment. In thi...
Magnetic nanoparticle-mediated hyperthermia is a very promising therapy for cancer treatment. In thi...
The use of magnetic nanoparticles in oncothermia has been investigated for decades, but an effective...
Several studies propose nanoparticles for tumor treatment, yet little is known about the fate of nan...
Functionalized iron oxide nanoparticles (IONPs) are increasingly being designed as a theranostic nan...