The development of biomaterials for the restoration of the normal tissue structure–function relationship in pathological conditions as well as acute and chronic injury is an area of intense investigation. More recently, the use of tailored or composite hydrogels for tissue engineering and regenerative medicine has sought to bridge the gap between natural tissues and applied biomaterials more clearly. By applying traditional concepts in engineering composites, these hydrogels represent hierarchical structured materials that translate more closely the key guiding principles required for improved recovery of tissue architecture and functional behavior, including physical, mass transport, and biological properties. For tissue-engineering scaffo...
International audienceHydrogels are three-dimensional, water-swollen polymer networks that have been...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
The past 30 years have seen increasingly rapid advances in the field of tissue engineer�ing, an inte...
The development of biomaterials for the restoration of the normal tissue structure–function relation...
The development of biomaterials for the restoration of the normal tissue structure–function re...
Over the past few decades, bone related disorders have constantly increased. Among all pathological ...
Tissue engineering (TE) has been used as an attractive and efficient process to restore the original...
The need of tissue and organ for transplantation to repair or replace damaged tissues is significant...
In the field of tissue engineering and regenerative medicine, hydrogels are used as biomaterials to ...
Biomaterial design is an important component towards tissue engineering applications. There are many...
Self‐healing supramolecular hydrogels have emerged as a novel class of biomaterials that combine hyd...
Tissue engineering (TE) strategies are aimed at the restoration of tissue architecture and functions...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
Accurate tissue phantoms are difficult to design due to the complex hyperelastic, viscoelastic and b...
Polymeric hydrogels are widely explored materials for biomedical applications. However, they have in...
International audienceHydrogels are three-dimensional, water-swollen polymer networks that have been...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
The past 30 years have seen increasingly rapid advances in the field of tissue engineer�ing, an inte...
The development of biomaterials for the restoration of the normal tissue structure–function relation...
The development of biomaterials for the restoration of the normal tissue structure–function re...
Over the past few decades, bone related disorders have constantly increased. Among all pathological ...
Tissue engineering (TE) has been used as an attractive and efficient process to restore the original...
The need of tissue and organ for transplantation to repair or replace damaged tissues is significant...
In the field of tissue engineering and regenerative medicine, hydrogels are used as biomaterials to ...
Biomaterial design is an important component towards tissue engineering applications. There are many...
Self‐healing supramolecular hydrogels have emerged as a novel class of biomaterials that combine hyd...
Tissue engineering (TE) strategies are aimed at the restoration of tissue architecture and functions...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
Accurate tissue phantoms are difficult to design due to the complex hyperelastic, viscoelastic and b...
Polymeric hydrogels are widely explored materials for biomedical applications. However, they have in...
International audienceHydrogels are three-dimensional, water-swollen polymer networks that have been...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
The past 30 years have seen increasingly rapid advances in the field of tissue engineer�ing, an inte...