Motion of micron and sub-micron size magnetic particles in alternating magnetic fields can activate mechanosensitive cellular functions or physically destruct cancer cells. However, such effects are usually observed with relatively large magnetic particles (>250 nm) that would be difficult if at all possible to deliver to remote sites in the body to treat disease. Here we show a completely new mechanism of selective toxicity of superparamagnetic nanoparticles (SMNP) of 7 to 8 nm in diameter to cancer cells. These particles are coated by block copolymers, which facilitates their entry into the cells and clustering in the lysosomes, where they are then magneto-mechanically actuated by remotely applied alternating current (AC) magnetic fields ...
Simple Summary: The application of simultaneous and di erent strategies to treat cancer appears a p...
The ability to control the movement of nanoparticles remotely and with high precision would have far...
<p> </p> <p>Magnetic hyperthermia using magnetic nanoparticles (MNPs) to absorb alternating magnetic...
Motion of micron and sub-micron size magnetic particles in alternating magnetic fields can activate ...
Using magnetic nanoparticles to absorb alternating magnetic field energy as a method of generating ...
The manipulation of magnetic nanoparticles (MNPs) using an external magnetic field, has been success...
International audienceTo improve cancer treatment with reduced side effects, several techniques are ...
Magnetic hyperthermia has a significant potential to be a new breakthrough for cancer treatment. The...
Currently available cancer therapies can cause damage to healthy tissue. We developed a unique metho...
Electromagnetics plays a crucial role in the interdisciplinary science of addressing the complex pro...
Superparamagnetic iron oxide nanoparticles provide a platform to deliver therapeutic agents to any d...
Resumen del trabajo presentado a la 1st Spanish Conference on Biomedical Applications of Nanomateria...
International audienceStudies with transplanted tumors in animals and clinical trials have provided ...
Simple Summary: The application of simultaneous and di erent strategies to treat cancer appears a p...
The ability to control the movement of nanoparticles remotely and with high precision would have far...
<p> </p> <p>Magnetic hyperthermia using magnetic nanoparticles (MNPs) to absorb alternating magnetic...
Motion of micron and sub-micron size magnetic particles in alternating magnetic fields can activate ...
Using magnetic nanoparticles to absorb alternating magnetic field energy as a method of generating ...
The manipulation of magnetic nanoparticles (MNPs) using an external magnetic field, has been success...
International audienceTo improve cancer treatment with reduced side effects, several techniques are ...
Magnetic hyperthermia has a significant potential to be a new breakthrough for cancer treatment. The...
Currently available cancer therapies can cause damage to healthy tissue. We developed a unique metho...
Electromagnetics plays a crucial role in the interdisciplinary science of addressing the complex pro...
Superparamagnetic iron oxide nanoparticles provide a platform to deliver therapeutic agents to any d...
Resumen del trabajo presentado a la 1st Spanish Conference on Biomedical Applications of Nanomateria...
International audienceStudies with transplanted tumors in animals and clinical trials have provided ...
Simple Summary: The application of simultaneous and di erent strategies to treat cancer appears a p...
The ability to control the movement of nanoparticles remotely and with high precision would have far...
<p> </p> <p>Magnetic hyperthermia using magnetic nanoparticles (MNPs) to absorb alternating magnetic...