The strength of the extracellular matrix (ECM) is that it is hierarchical in terms of matrix built-up, matrix density and fiber structure, which allows for hormones, cytokines, and other small biomolecules to be stored within its network. The ECM-like hydrogels that are currently used do not possess this ability, and long-term storage, along with the need for free diffusion of small molecules, are generally incompatible requirements. Nanogels are able to fulfill the additional requirements upon successful integration. Herein, a stable hierarchical nanogel-gelatin methacryloyl (GelMA) composite hydrogel system is provided by covalently embedding nanogels inside the micropore network of GelMA hydrogel to allow a controlled local functionality...
Effective vascularization is crucial for three-dimensional (3D) printed hydrogel-cell constructs to ...
The possibility to 3D shape hydrogels is attracting an enormous interest in the biomedical field bot...
Injectable hydrogels have previously demonstrated potential as a temporary scaffold for tissue regen...
The strength of the extracellular matrix (ECM) is that it is hierarchical in terms of matrix built-u...
Gelatin methacryloyl (GelMA) hydrogels have been widely used for various biomedical applications due...
Increasing demand for customized implants and tissue scaffolds requires advanced biomaterials and fa...
Gelatin-methacryloyl (GelMA) is a semi-synthetic hydrogel which consists of gelatin derivatized with...
BiocompatibLe methacryLamide-modified geLatin (GELMA) hydrogeLs with tuned characteristics, obtained...
We present the first cell-attachable and visible-light-crosslinkable bioinks based on gelatin methac...
We present the first cell attachable and visible light crosslinkable hydrogels based on gelatin meth...
Polymeric hydrogels are fascinating platforms as 3D scaffolds for tissue repair and delivery systems...
The combined use of natural ECM components and synthetic materials offers an attractive alternative ...
New biocompatible materials have enabled the direct 3D printing of complex functional living tissues...
The future of tissue engineering and regenerative medicine relies on the development of biomimetic e...
We propose an injectable nanocomposite hydrogel that is photo-curable via light-induced thiol-ene ad...
Effective vascularization is crucial for three-dimensional (3D) printed hydrogel-cell constructs to ...
The possibility to 3D shape hydrogels is attracting an enormous interest in the biomedical field bot...
Injectable hydrogels have previously demonstrated potential as a temporary scaffold for tissue regen...
The strength of the extracellular matrix (ECM) is that it is hierarchical in terms of matrix built-u...
Gelatin methacryloyl (GelMA) hydrogels have been widely used for various biomedical applications due...
Increasing demand for customized implants and tissue scaffolds requires advanced biomaterials and fa...
Gelatin-methacryloyl (GelMA) is a semi-synthetic hydrogel which consists of gelatin derivatized with...
BiocompatibLe methacryLamide-modified geLatin (GELMA) hydrogeLs with tuned characteristics, obtained...
We present the first cell-attachable and visible-light-crosslinkable bioinks based on gelatin methac...
We present the first cell attachable and visible light crosslinkable hydrogels based on gelatin meth...
Polymeric hydrogels are fascinating platforms as 3D scaffolds for tissue repair and delivery systems...
The combined use of natural ECM components and synthetic materials offers an attractive alternative ...
New biocompatible materials have enabled the direct 3D printing of complex functional living tissues...
The future of tissue engineering and regenerative medicine relies on the development of biomimetic e...
We propose an injectable nanocomposite hydrogel that is photo-curable via light-induced thiol-ene ad...
Effective vascularization is crucial for three-dimensional (3D) printed hydrogel-cell constructs to ...
The possibility to 3D shape hydrogels is attracting an enormous interest in the biomedical field bot...
Injectable hydrogels have previously demonstrated potential as a temporary scaffold for tissue regen...