Multidrug resistance (MDR) is a leading cause of failure in current chemotherapy treatment and constitutes a formidable challenge in therapeutics. Here, we demonstrate that a nanoscale magnetic tandem apoptosis trigger (m-TAT), which consists of a magnetic nanoparticle and chemodrug (e.g., doxorubicin), can completely remove MDR cancer cells in both in vitro and in vivo systems. m-TAT simultaneously activates extrinsic and intrinsic apoptosis signals in a synergistic fashion and downregulates the drug efflux pump (e.g., P-glycoprotein) which is one of the main causes of MDR. The tandem apoptosis strategy uses low level of chemodrug (in the nanomolar (nM) range) to eliminate MDR cancer cells. We further demonstrate that apoptosis of MDR canc...
Nanotechnology has shown a revolution in cancer treatments, including breast cancers. However, there...
Currently, various methods based on magnetic nanoparticles are being considered for the treatment of...
Nanoscience has attracted attention as a fast burgeoning field with promising methodologies for canc...
Magnetic nanoparticles have been widely used in cancer treatment for their potential magnetic functi...
International audienceCancer is a highly heterogeneous disease at intra/inter patient levels and kno...
Every year, cancer accounts for a vast portion of deaths worldwide. Established clinical protocols a...
The regulation of cellular activities in a controlled manner is one of the most challenging issues i...
Efficient delivery of DNA-toxin anticancer drugs into nucleus of targeted tumor cells while simultan...
Magnetic nanoparticles (MNPs) hold tremendous potential for various biomedical applications, includi...
International audienceNanotherapy using targeted magnetic nanoparticles grafted with peptidic ligand...
Graduate Program for Nanomedical Science/석사Controlled regulation of cellular activities is one of th...
Recently, we designed an inventive paradigm in nanomedicine—drug-free macromolecular therapeutics (D...
Nanotherapy using targeted magnetic nanoparticles grafted with peptidic ligands of receptors overexp...
Doxorubicin is a cytotoxic drug used for the treatment of many cancer types. However, its significan...
Today, cancer is the world’s deadliest disease. Despite significant progress to find a cure, especia...
Nanotechnology has shown a revolution in cancer treatments, including breast cancers. However, there...
Currently, various methods based on magnetic nanoparticles are being considered for the treatment of...
Nanoscience has attracted attention as a fast burgeoning field with promising methodologies for canc...
Magnetic nanoparticles have been widely used in cancer treatment for their potential magnetic functi...
International audienceCancer is a highly heterogeneous disease at intra/inter patient levels and kno...
Every year, cancer accounts for a vast portion of deaths worldwide. Established clinical protocols a...
The regulation of cellular activities in a controlled manner is one of the most challenging issues i...
Efficient delivery of DNA-toxin anticancer drugs into nucleus of targeted tumor cells while simultan...
Magnetic nanoparticles (MNPs) hold tremendous potential for various biomedical applications, includi...
International audienceNanotherapy using targeted magnetic nanoparticles grafted with peptidic ligand...
Graduate Program for Nanomedical Science/석사Controlled regulation of cellular activities is one of th...
Recently, we designed an inventive paradigm in nanomedicine—drug-free macromolecular therapeutics (D...
Nanotherapy using targeted magnetic nanoparticles grafted with peptidic ligands of receptors overexp...
Doxorubicin is a cytotoxic drug used for the treatment of many cancer types. However, its significan...
Today, cancer is the world’s deadliest disease. Despite significant progress to find a cure, especia...
Nanotechnology has shown a revolution in cancer treatments, including breast cancers. However, there...
Currently, various methods based on magnetic nanoparticles are being considered for the treatment of...
Nanoscience has attracted attention as a fast burgeoning field with promising methodologies for canc...