Fiche publication
Date publication
juin 2026
Journal
iScience
Auteurs
Membres identifiés du Cancéropôle Est :
Pr LEHN Jean-Marie
Tous les auteurs :
Mondal S, Lala B, Biswas D, Lehn JM, Dash J
Lien Pubmed
Résumé
We report a nucleic acid inspired constitutional dynamic hydrogel (G4TZ) self-assembled from guanosine, a phenylboronic acid, and a thiazole peptide through dynamic covalent linkages formed by boronate ester and imine bonds, together with supramolecular interactions involving π-π stacking and K-induced G-quartet formation. The resulting transparent and injectable hydrogel exhibits shear-thinning and pH-responsive behavior. G4TZ displays potent antibacterial activity against multidrug-resistant through reactive oxygen species generation, membrane disruption, DNA fragmentation, and biofilm inhibition, while maintaining excellent cytocompatibility. Furthermore, it accelerates re-epithelialization and promotes wound healing both and . This dynamic covalent and supramolecular system unites molecular design with biological function, offering strong translational potential for antimicrobial and regenerative medicine. More broadly, this work demonstrates reaction-driven multicomponent self-assembly as a general strategy to engineer multifunctional biomaterials with enhanced stability, biocompatibility, and therapeutic efficacy.
Mots clés
biomaterials, biomedical engineering, biomedical materials, tissue engineering
Référence
iScience. 2026 06 19;29(6):116107