International audienceIn this study, biologically synthesized iron oxide nanoparticles, called magnetosomes, are made fully biocompatible by removing potentially toxic organic bacterial residues such as endotoxins at magnetosome mineral core surfaces and by coating such surface with poly-L-lysine, leading to magnetosomes-poly-L-lysine (M-PLL). M-PLL antitumor efficacy is compared with that of chemically synthesized iron oxide nanoparticles (IONPs) currently used for magnetic hyperthermia. M-PLL and IONPs are tested for the treatment of glioblastoma, a dreadful cancer, in which intratumor nanoparticle administration is clinically relevant, using a mouse allograft model of murine glioma (GL-261 cell line). A magnetic hyperthermia treatment pr...
International audiencePrevious studies showed that magnetic hyperthermia could efficiently destroy t...
Nanomedicine is a rapidly developing field which utilises the unique properties of nanomaterials for...
[Purpose] Tumor cells can be effectively inactivated by heating mediated by magnetic nanoparticles. ...
International audienceIn this study, biologically synthesized iron oxide nanoparticles, called magne...
International audienceMagnetic hyperthermia was reported to increase the survival of patients with r...
International audienceMagnetic hyperthermia, in which magnetic nanoparticles are introduced into tum...
Magnetic Fluid Hyperthermia (MFH) involves the use of iron-based magnetic nanoparticles injected int...
Magnetic fluid hyperthermia (MFH) with chemically synthesized nanoparticles is currently used in cli...
Cancer is a major disease, affecting people globally. Breast cancer specifically, is one of the prim...
Magnetic fluid hyperthermia (MFH) with chemically synthesized nanoparticles is currently used in cli...
International audiencePrevious studies showed that magnetic hyperthermia could efficiently destroy t...
Nanomedicine is a rapidly developing field which utilises the unique properties of nanomaterials for...
[Purpose] Tumor cells can be effectively inactivated by heating mediated by magnetic nanoparticles. ...
International audienceIn this study, biologically synthesized iron oxide nanoparticles, called magne...
International audienceMagnetic hyperthermia was reported to increase the survival of patients with r...
International audienceMagnetic hyperthermia, in which magnetic nanoparticles are introduced into tum...
Magnetic Fluid Hyperthermia (MFH) involves the use of iron-based magnetic nanoparticles injected int...
Magnetic fluid hyperthermia (MFH) with chemically synthesized nanoparticles is currently used in cli...
Cancer is a major disease, affecting people globally. Breast cancer specifically, is one of the prim...
Magnetic fluid hyperthermia (MFH) with chemically synthesized nanoparticles is currently used in cli...
International audiencePrevious studies showed that magnetic hyperthermia could efficiently destroy t...
Nanomedicine is a rapidly developing field which utilises the unique properties of nanomaterials for...
[Purpose] Tumor cells can be effectively inactivated by heating mediated by magnetic nanoparticles. ...