Hydroxyapatite (HA) coated iron oxide (Fe 3O4) magnetic nanoparticles have been shown to enhance osteoblast (bone forming cells) proliferation and osteoblast differentiation into calcium depositing cells (through increased secretion of alkaline phosphatase, collagen and calcium deposition) compared to control samples without nanoparticles. Such nanoparticles are, thus, very promising for numerous orthopedic applications including magnetically directed osteoporosis treatment. The objective of the current study was to elucidate the mechanisms of the aforementioned improved osteoblast responses in the presence of HA coated Fe 3O4 nanoparticles. Results demonstrated large amounts of fibronectin (a protein known to increase osteoblast functions)...
Titanium(Ti) is an ideal bone substitute due to its superior bio-compatibilities and remarkable corr...
Titanium(Ti) is an ideal bone substitute due to its superior bio-compatibilities and remarkable corr...
The introduction of nanoparticles into bone tissue engineering strategies is beneficial to govern ce...
Hydroxyapatite (HA) has been widely used in the biomedical community, especially for orthopedic appl...
Iron oxide nanoparticles are promising candidates for controlling drug delivery through an external ...
International audiencePurpose: The presented study aimed to investigate the effects of Fe 3O 4 nanop...
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...
none8siBackground: Superparamagnetic nanoparticles (MNPs) have been progressively explored for their...
International audienceBackgroundPrevalence of osteoporosis is rapidly growing and so searching for n...
Background: Superparamagnetic nanoparticles (MNPs) have been progressively explored for their potent...
In this study nanocomposite was used for reconstruction of alveolar bone defect of mandible. Specifi...
The use of synthetic hydroxyapatite as bone substitute calls for the knowledge of the influence on a...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
International audienceRecently, iron oxide nanoparticles (IONPs) have gathered special attention in ...
Titanium(Ti) is an ideal bone substitute due to its superior bio-compatibilities and remarkable corr...
Titanium(Ti) is an ideal bone substitute due to its superior bio-compatibilities and remarkable corr...
The introduction of nanoparticles into bone tissue engineering strategies is beneficial to govern ce...
Hydroxyapatite (HA) has been widely used in the biomedical community, especially for orthopedic appl...
Iron oxide nanoparticles are promising candidates for controlling drug delivery through an external ...
International audiencePurpose: The presented study aimed to investigate the effects of Fe 3O 4 nanop...
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...
none8siBackground: Superparamagnetic nanoparticles (MNPs) have been progressively explored for their...
International audienceBackgroundPrevalence of osteoporosis is rapidly growing and so searching for n...
Background: Superparamagnetic nanoparticles (MNPs) have been progressively explored for their potent...
In this study nanocomposite was used for reconstruction of alveolar bone defect of mandible. Specifi...
The use of synthetic hydroxyapatite as bone substitute calls for the knowledge of the influence on a...
Targeting and differentiating stem cells at sites of injury and repair is an exciting and promising ...
International audienceRecently, iron oxide nanoparticles (IONPs) have gathered special attention in ...
Titanium(Ti) is an ideal bone substitute due to its superior bio-compatibilities and remarkable corr...
Titanium(Ti) is an ideal bone substitute due to its superior bio-compatibilities and remarkable corr...
The introduction of nanoparticles into bone tissue engineering strategies is beneficial to govern ce...