Antibacterial polyurethane foams with incorporated lignin-capped silver nanoparticles for chronic wound treatment

Lignin-capped silver nanoparticles were incorporated in situ into polyurethane foams during their polymerization to obtain multifunctional materials suitable for chronic wound dressing. Lignin with increased phenolic content, achieved through the enzymatic grafting of natural phenolic compounds, pla...

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Detalhes bibliográficos
Autores: Morena Gatius, Ángela Gala|||0000-0003-4470-8249, Ivanova, Kristina Dimitrova|||0000-0001-9158-4088, Pérez Rafael, Silvia|||0000-0001-9658-6090, Sánchez Soto, Miguel|||0000-0002-0023-5059, Tzanov, Tzanko|||0000-0002-8568-1110, Stefanov, Ivaylo
Formato: artículo
Fecha de publicación:2020
País:España
Recursos:Universitat Politècnica de Catalunya (UPC)
Repositorio:UPCommons. Portal del coneixement obert de la UPC
Idioma:inglés
OAI Identifier:oai:upcommons.upc.edu:2117/180503
Acesso em linha:https://hdl.handle.net/2117/180503
https://dx.doi.org/10.1021/acs.iecr.9b06362
Access Level:acceso abierto
Palavra-chave:Polymers -- Deterioration
Biomedical materials
Nanoparticles
Polymerization
Absorption
Organic polymers
Foams
Biopolymers
Silve
Polímers -- Deterioració
Materials biomèdics
Nanopartícules
Plata
Polimerització
Àrees temàtiques de la UPC::Enginyeria química
Descrição
Resumo:Lignin-capped silver nanoparticles were incorporated in situ into polyurethane foams during their polymerization to obtain multifunctional materials suitable for chronic wound dressing. Lignin with increased phenolic content, achieved through the enzymatic grafting of natural phenolic compounds, played the dual role of a silver reducing agent in the synthesis of the lignin-capped silver nanoparticles and as a nanoformulated polyol additive in the polyurethane composition able to react with isocyanate. The nanoparticles-embedded polyurethane foams showed over 4 and 5 logs bacterial growth reduction against the Gram-positive S. aureus and the Gram-negative P. aeruginosa, respectively, attributed to both the direct contact- and release-killing mechanisms. The swelling properties of the foams, related to their capacity to remove the excess of wound exudates containing deleterious oxidative species and enzymes, varied from 585 to 1145 % as a function of the content of nanoparticles. Overall, the physicomechanical and antibacterial properties of the foams, together with their biocompatibility and sustained release of silver, make these multifunctional materials suitable candidates for chronic wound dressings.