To regenerate soft aligned tissues in living organisms, low invasive biomaterials are required to create 3D microenvironments with a structural complexity to mimic the tissue's native architecture. Here, a tunable injectable hydrogel is reported, which allows precise engineering of the construct's anisotropy in situ. This material is defined as an Anisogel, representing a new type of tissue regenerative therapy. The Anisogel comprises a soft hydrogel, surrounding magneto-responsive, cell adhesive, short fibers, which orient in situ in the direction of a low external magnetic field, before complete gelation of the matrix. The magnetic field can be removed after gelation of the biocompatible gel precursor, which fixes the aligned fibers and p...
AbstractA new combination of tissue engineering techniques provides a simple and effective method fo...
Tissue engineering, the primary therapeutic approach to achieving regeneration following traumatic i...
Hydrogel matrices are valuable platforms for neuronal tissue engineering. Orienting gel fibers to ac...
We focus on designing biomaterial systems for hierarchical tissue engineering. Polymeric molecular a...
An enzymatically cross-linked polyethylene glycol (PEG)-based hydrogel was engineered to promote and...
An enzymatically cross-linked polyethylene glycol (PEG)-based hydrogel was engineered to promote and...
In nerve regeneration, scaffolds play an important role in providing an artificial extracellular mat...
There is a growing research interest on designing a tissue regenerative matrix that can be injected ...
Directing cells is essential to organize multi-cellular organisms that are built up from subunits ex...
The assembly of soft filamentous structures is nature’s way to create the extracellular matrices (EC...
Over the last decades, significant progress has been made in the field of implants and medical devic...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
Combining cellular self-alignment within tethered collagen gels with stabilization through subsequen...
Injectable hydrogels are particularly interesting for applications in minimally invasive tissue engi...
Stimuli-responsive materials have the potential to enable the generation of new bioinspired devices ...
AbstractA new combination of tissue engineering techniques provides a simple and effective method fo...
Tissue engineering, the primary therapeutic approach to achieving regeneration following traumatic i...
Hydrogel matrices are valuable platforms for neuronal tissue engineering. Orienting gel fibers to ac...
We focus on designing biomaterial systems for hierarchical tissue engineering. Polymeric molecular a...
An enzymatically cross-linked polyethylene glycol (PEG)-based hydrogel was engineered to promote and...
An enzymatically cross-linked polyethylene glycol (PEG)-based hydrogel was engineered to promote and...
In nerve regeneration, scaffolds play an important role in providing an artificial extracellular mat...
There is a growing research interest on designing a tissue regenerative matrix that can be injected ...
Directing cells is essential to organize multi-cellular organisms that are built up from subunits ex...
The assembly of soft filamentous structures is nature’s way to create the extracellular matrices (EC...
Over the last decades, significant progress has been made in the field of implants and medical devic...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
Combining cellular self-alignment within tethered collagen gels with stabilization through subsequen...
Injectable hydrogels are particularly interesting for applications in minimally invasive tissue engi...
Stimuli-responsive materials have the potential to enable the generation of new bioinspired devices ...
AbstractA new combination of tissue engineering techniques provides a simple and effective method fo...
Tissue engineering, the primary therapeutic approach to achieving regeneration following traumatic i...
Hydrogel matrices are valuable platforms for neuronal tissue engineering. Orienting gel fibers to ac...