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Keywords: magnetic hyperthermia

Thermally responsive lipid coated superparamagnetic nanoparticles for frequency triggered drug delivery

Patil-Sen Y., Eizadi Sharifabad M., Mercer T., Bond G., Patil-Sen Y., Sen T., University of Central Lancashire, UK
In this abstract, we report a series of novel thermally responsive lipid coated core-shell mesoporous silica-superparamagnetic iron oxide nanoparticles as drug delivery vehicles for potential use for cancer therapy under magnetic hyperthermia. Hydrophilic anticancer drug [...]

In Vitro Assessment of a Novel Cancer Therapy Combining Drug Loaded Magnetic Nanoparticles and Magnetic Hyperthermia

Ni Q., Texas A&M International University, US
We propose to develop a novel combination therapy for prostate/breast treatment by combining two treatment modalities (hyperthermia therapy and chemotherapy) into one using MCaP nanoparticles (NP) system. Our proposed MCaP NPs possess unique properties, including: [...]

Core-shell Silica-coated Iron Oxide Nanoparticles for Magnetic Hyperthermia

Iqbal Y., Bae H., Hong S., Rhee I., Kyungpook National University, KR
We report the synthesis and characterization of silica-coated iron oxide nanoparticles with a core-shell structure for magnetic hyperthermia. The nanoparticles of silica-coated iron oxide were synthesized using the reverse micelle method. The coating of the [...]

Application of Nanomagnetic Particles in Hyperthermia Cancer Treatment

Hayek S., Chen C-J., Haik Y., Hohite V., Florida State University, US
This research focuses on developing uniform particles with a Curie temperature that is similar to the therapeutic one for the purpose of cncer treatment. Such particles will self-regulate the temperature of the tumor during Magnetic [...]

Effect of High AC Magnetic Field on Magnetic Nanoparticles for Magnetic Hyperthermia and Radiation/Chemotherapy Applications

Belc D., Chen C., Roberts R., Bettge M., Arora R., Mohite V., Florida State University, US
There are numerous studies in the field that explain and model the behavior and heating properties of magnetic nanoparticles (NPs) when exposed to an alternating magnetic field [1, 2]. Particularly for applications such as magnetic [...]

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