Development of novel bioinks formulations based on supramolecular self-assembled hydrogels for tissue regeneration.
llistat de metadades
Autor/a
Director/a
Román, Pérez Antoñanzas
María, Godoy Gallardo
Fecha de defensa
2023-04-21
Páginas
254 p.
Departamento/Instituto
Universitat Internacional de Catalunya. Departament de Ciències Bàsiques
Resumen
The field of tissue engineering relies on the use of biomaterials as scaffolds for tissue and organ regeneration. If properly designed, these scaffolds can mimic the in vivo microenvironment while also providing initial mechanical support, allowing cells and active molecules to enter and spread within the scaffold. In recent years, hydrogels have gained increasing interest as biomaterials for a wide range of applications, including drug delivery and tissue engineering, as they can possess great biocompatibility, biodegradability and manufacturing stability.
Palabras clave
Guanosine; Guanosine-based hydrogels; Guanosine and derivatives; Boric acid derivatives; Nucleoside; Nucleoside-based hydrogels; 3D printing; Printable hydrogels
Materias
61 - Medicina