The native extracellular matrix (ECM) is a complex gel-like system with a broad range of structural features and biomolecular signals. Hydrogel platforms that can recapitulate the complexity and signaling properties of this ECM would have enormous impact in fields ranging from tissue engineering to drug discovery. Here, we report on the design, synthesis, and proof-of-concept validation of a microporous and nanofibrous hydrogel exhibiting multiple bioactive epitopes designed to recreate key features of the bone ECM. The material platform integrates self-assembly with orthogonal enzymatic cross-linking to create a supramolecular environment comprising hyaluronic acid modified with tyramine (HA-Tyr) and peptides amphiphiles (PAs) designed to ...
[EN] The performance of a composite environment with human umbilical vein endothelial cells (HUVECs)...
A key feature in biomaterial design is the incorporation of bioactive signals into artificial constr...
Hydrogels from self-assembling ionic complementary peptides have been receiving a lot of interest fr...
The native extracellular matrix (ECM) is a complex gel-like system with a broad range of structural ...
Vascularization is a fundamental prerequisite for large bone construct development and remains one o...
Extracellular matrix (ECM)-derived matrices such as Matrigel are used to culture numerous cell types...
Producción CientíficaBone tissue engineering demands alternatives overcoming the limitations of trad...
Synthetic osteo‐promoting materials that are able to stimulate and accelerate bone formation without...
The coculture of osteogenic and angiogenic cells and the resulting paracrine signaling via soluble f...
The coculture of osteogenic and angiogenic cells and the resulting paracrine signaling via soluble f...
Structured hydrogels showing form stability and elastic properties individually tailorable on differ...
To date, bone tissue regeneration strategies lack an approach that effectively provides an osteogeni...
Synthetic osteo?promoting materials that are able to stimulate and accelerate bone formation without...
Mimicking bone extracellular matrix (ECM) is paramount to develop novel biomaterials for bone tissue...
The critical factor determining the in vivo effect of bone repair materials is the microenvironment,...
[EN] The performance of a composite environment with human umbilical vein endothelial cells (HUVECs)...
A key feature in biomaterial design is the incorporation of bioactive signals into artificial constr...
Hydrogels from self-assembling ionic complementary peptides have been receiving a lot of interest fr...
The native extracellular matrix (ECM) is a complex gel-like system with a broad range of structural ...
Vascularization is a fundamental prerequisite for large bone construct development and remains one o...
Extracellular matrix (ECM)-derived matrices such as Matrigel are used to culture numerous cell types...
Producción CientíficaBone tissue engineering demands alternatives overcoming the limitations of trad...
Synthetic osteo‐promoting materials that are able to stimulate and accelerate bone formation without...
The coculture of osteogenic and angiogenic cells and the resulting paracrine signaling via soluble f...
The coculture of osteogenic and angiogenic cells and the resulting paracrine signaling via soluble f...
Structured hydrogels showing form stability and elastic properties individually tailorable on differ...
To date, bone tissue regeneration strategies lack an approach that effectively provides an osteogeni...
Synthetic osteo?promoting materials that are able to stimulate and accelerate bone formation without...
Mimicking bone extracellular matrix (ECM) is paramount to develop novel biomaterials for bone tissue...
The critical factor determining the in vivo effect of bone repair materials is the microenvironment,...
[EN] The performance of a composite environment with human umbilical vein endothelial cells (HUVECs)...
A key feature in biomaterial design is the incorporation of bioactive signals into artificial constr...
Hydrogels from self-assembling ionic complementary peptides have been receiving a lot of interest fr...