Bone tissue engineering has obtained valuable results using biophysical stimulation through magnetic fields to enhance integration of prosthetic implants. Recently a new class of therapeutic scaffolds has been developed in order to activate remotely, in non-invasive way, using magnetic fields. In our work we analyzed the ability of these scaffolds to attract magnetic bioagents towards them, thanks to the magnetic field gradients due to the non-linear response of the prosthetic implant. The possibility of influence osteogenic and/or angiogenic cells is taken into account, and a simple chemotaxis model indirectly driven by magnetic field is proposed
The concept of magnetic guidance has opened a wide range of perspectives in the field of tissue rege...
Multifunctional, stimuli-responsive theranostic biomaterials are gaining attention from the scientif...
There is currently an interest in "active" implantable biomedical devices that include mechanical st...
Bone tissue engineering has obtained valuable results using biophysical stimulation through magnetic...
Recently developed superparamagnetic scaffolds for bone tissue engineering are still a complex objec...
Magnetic scaffolds are becoming increasingly attractive in tissue engineering, due to their ability ...
Creating 'smart' biomedical devices with the potential for controlled actuation in vivo has been a l...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
he fundamental elements of tissue regeneration are cells, biochemical signals and the three-dimensio...
Magnetic bone substitutes are multifunctional nanocomposite biomaterials designed to serve as an in-...
The use of magnetism in tissue engineering is a very promising approach, in fact magnetic scaffolds ...
The main driving idea of the project is the creation of a conceptually new type of scaffolds able to...
The fascinating prospect to direct tissue regeneration by magnetic activation has been recently expl...
none15siThe use of magnetism in tissue engineering is a very promising approach, in fact magnetic sc...
The concept of magnetic guidance has opened a wide range of perspectives in the field of tissue rege...
Multifunctional, stimuli-responsive theranostic biomaterials are gaining attention from the scientif...
There is currently an interest in "active" implantable biomedical devices that include mechanical st...
Bone tissue engineering has obtained valuable results using biophysical stimulation through magnetic...
Recently developed superparamagnetic scaffolds for bone tissue engineering are still a complex objec...
Magnetic scaffolds are becoming increasingly attractive in tissue engineering, due to their ability ...
Creating 'smart' biomedical devices with the potential for controlled actuation in vivo has been a l...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
In recent years, interest in tissue engineering and its solutions has increased considerably. In par...
he fundamental elements of tissue regeneration are cells, biochemical signals and the three-dimensio...
Magnetic bone substitutes are multifunctional nanocomposite biomaterials designed to serve as an in-...
The use of magnetism in tissue engineering is a very promising approach, in fact magnetic scaffolds ...
The main driving idea of the project is the creation of a conceptually new type of scaffolds able to...
The fascinating prospect to direct tissue regeneration by magnetic activation has been recently expl...
none15siThe use of magnetism in tissue engineering is a very promising approach, in fact magnetic sc...
The concept of magnetic guidance has opened a wide range of perspectives in the field of tissue rege...
Multifunctional, stimuli-responsive theranostic biomaterials are gaining attention from the scientif...
There is currently an interest in "active" implantable biomedical devices that include mechanical st...