Hydrogel matrices are valuable platforms for neuronal tissue engineering. Orienting gel fibers to achieve a directed scaffold is important for effective functional neuronal regeneration. However, current methods are limited and require treatment of gels prior to implantation, ex-vivo, without taking into consideration the pathology in the injured site. We have developed a method to control gel orientation dynamically and remotely in situ. We have mixed into collagen hydrogels magnetic nanoparticles then applied an external magnetic field. During the gelation period the magnetic particles aggregated into magnetic particle strings, leading to the alignment of the collagen fibers. We have shown that neurons within the 3D magnetically induced g...
Neurons are the targets of injury and disease in many neurological conditions, and achieving neurona...
Neuromodulation tools are useful to decipher and modulate neural circuitries implicated in functions...
Combining cellular self-alignment within tethered collagen gels with stabilization through subsequen...
Hydrogel matrices are valuable platforms for neuronal tissue engineering. Orienting gel fibers to ac...
The use of neural scaffolds with a highly defined microarchitecture, fabricated with standard techni...
Magnetic electrospun fibers are of interest for minimally invasive biomaterial applications that als...
The assembly of soft filamentous structures is nature’s way to create the extracellular matrices (EC...
There is a growing body of evidence indicating the importance of physical stimuli for neuronal growt...
To regenerate soft aligned tissues in living organisms, low invasive biomaterials are required to cr...
The development of nerve guidance conduits is constantly evolving as the need arises for therapies f...
International audienceConferring orientational order to biological hydrogels constitutes a fruitful ...
Injectable hydrogels are particularly interesting for applications in minimally invasive tissue engi...
Tissue engineering offers many potential solutions for replacement and repair of diseased or damage ...
There is a growing research interest on designing a tissue regenerative matrix that can be injected ...
Combining cellular self-alignment within tethered collagen gels with stabilization through subsequen...
Neurons are the targets of injury and disease in many neurological conditions, and achieving neurona...
Neuromodulation tools are useful to decipher and modulate neural circuitries implicated in functions...
Combining cellular self-alignment within tethered collagen gels with stabilization through subsequen...
Hydrogel matrices are valuable platforms for neuronal tissue engineering. Orienting gel fibers to ac...
The use of neural scaffolds with a highly defined microarchitecture, fabricated with standard techni...
Magnetic electrospun fibers are of interest for minimally invasive biomaterial applications that als...
The assembly of soft filamentous structures is nature’s way to create the extracellular matrices (EC...
There is a growing body of evidence indicating the importance of physical stimuli for neuronal growt...
To regenerate soft aligned tissues in living organisms, low invasive biomaterials are required to cr...
The development of nerve guidance conduits is constantly evolving as the need arises for therapies f...
International audienceConferring orientational order to biological hydrogels constitutes a fruitful ...
Injectable hydrogels are particularly interesting for applications in minimally invasive tissue engi...
Tissue engineering offers many potential solutions for replacement and repair of diseased or damage ...
There is a growing research interest on designing a tissue regenerative matrix that can be injected ...
Combining cellular self-alignment within tethered collagen gels with stabilization through subsequen...
Neurons are the targets of injury and disease in many neurological conditions, and achieving neurona...
Neuromodulation tools are useful to decipher and modulate neural circuitries implicated in functions...
Combining cellular self-alignment within tethered collagen gels with stabilization through subsequen...