Background: Superparamagnetic nanoparticles (MNPs) have been progressively explored for their potential in biomedical applications and in particular as a contrast agent for diagnostic imaging, for magnetic drug delivery and more recently for tissue engineering applications. Considering the importance of having safe MNPs for such applications, and the essential role of iron in bone remodelling, this study developed and analysed novel biocompatible and bioreabsorbable superparamagnetic nanoparticles, that avoid the use of poorly tolerated magnetite based nanoparticles, for bone tissue engineering applications. Results: MNPs were obtained by doping hydroxyapatite (HA) with Fe ions, by directly substituting Fe2+ and Fe3+ into the HA structure y...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
none15siThe use of magnetism in tissue engineering is a very promising approach, in fact magnetic sc...
none8siBackground: Superparamagnetic nanoparticles (MNPs) have been progressively explored for their...
In this study nanocomposite was used for reconstruction of alveolar bone defect of mandible. Specifi...
Hydroxyapatite (HA) has been widely used in the biomedical community, especially for orthopedic appl...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
International audiencePurpose: The presented study aimed to investigate the effects of Fe 3O 4 nanop...
none7siSuperparamagnetic nanoparticles offer several opportunities in nanomedicine and magnetic cell...
International audiencePurpose: The presented study aimed to investigate the effects of Fe 3O 4 nanop...
Regenerative medicine consisting of cells and materials offers a new approach for repairing and rege...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Hydroxyapatite (HA) coated iron oxide (Fe 3O4) magnetic nanoparticles have been shown to enhance ost...
Large bone defects with limited intrinsic regenerative potential represent a major surgical challeng...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
none15siThe use of magnetism in tissue engineering is a very promising approach, in fact magnetic sc...
none8siBackground: Superparamagnetic nanoparticles (MNPs) have been progressively explored for their...
In this study nanocomposite was used for reconstruction of alveolar bone defect of mandible. Specifi...
Hydroxyapatite (HA) has been widely used in the biomedical community, especially for orthopedic appl...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
International audiencePurpose: The presented study aimed to investigate the effects of Fe 3O 4 nanop...
none7siSuperparamagnetic nanoparticles offer several opportunities in nanomedicine and magnetic cell...
International audiencePurpose: The presented study aimed to investigate the effects of Fe 3O 4 nanop...
Regenerative medicine consisting of cells and materials offers a new approach for repairing and rege...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Hydroxyapatite (HA) coated iron oxide (Fe 3O4) magnetic nanoparticles have been shown to enhance ost...
Large bone defects with limited intrinsic regenerative potential represent a major surgical challeng...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
none15siThe use of magnetism in tissue engineering is a very promising approach, in fact magnetic sc...