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Bottom-up Layer-by-Layer Assembling of Antibacterial Freestanding Nanobiocomposite Films.
Francesko, Antonio; Ivanova, Kristina; Hoyo, Javier; Pérez-Rafael, Sílvia; Petkova, Petya; Fernandes, Margarida M; Heinze, Thomas; Mendoza, Ernest; Tzanov, Tzanko.
Afiliação
  • Francesko A; Grup de Biotecnologia Molecular i Industrial, Department of Chemical Engineering , Universitat Politècnica de Catalunya , Rambla Sant Nebridi 22 , Terrassa 08222 , Spain.
  • Ivanova K; Grup de Biotecnologia Molecular i Industrial, Department of Chemical Engineering , Universitat Politècnica de Catalunya , Rambla Sant Nebridi 22 , Terrassa 08222 , Spain.
  • Hoyo J; Grup de Biotecnologia Molecular i Industrial, Department of Chemical Engineering , Universitat Politècnica de Catalunya , Rambla Sant Nebridi 22 , Terrassa 08222 , Spain.
  • Pérez-Rafael S; Grup de Biotecnologia Molecular i Industrial, Department of Chemical Engineering , Universitat Politècnica de Catalunya , Rambla Sant Nebridi 22 , Terrassa 08222 , Spain.
  • Petkova P; Grup de Biotecnologia Molecular i Industrial, Department of Chemical Engineering , Universitat Politècnica de Catalunya , Rambla Sant Nebridi 22 , Terrassa 08222 , Spain.
  • Fernandes MM; Grup de Biotecnologia Molecular i Industrial, Department of Chemical Engineering , Universitat Politècnica de Catalunya , Rambla Sant Nebridi 22 , Terrassa 08222 , Spain.
  • Heinze T; Center of Excellence for Polysaccharide Research, Institute of Organic Chemistry and Macromolecular Chemistry , Friedrich Schiller University of Jena , Humboldtstraße 10 , Jena 07743 , Germany.
  • Mendoza E; Grup de Nanomaterials Aplicats, Centre de Recerca en Nanoenginyeria , Universitat Politècnica de Catalunya , c/Pascual i Vila 15 , Barcelona 08028 , Spain.
  • Tzanov T; Grup de Biotecnologia Molecular i Industrial, Department of Chemical Engineering , Universitat Politècnica de Catalunya , Rambla Sant Nebridi 22 , Terrassa 08222 , Spain.
Biomacromolecules ; 19(9): 3628-3636, 2018 09 10.
Article em En | MEDLINE | ID: mdl-30052024
ABSTRACT
In this study, freestanding nanobiocomposite films were obtained by the sequential deposition of biopolymer-capped silver nanoparticles (AgNPs) and hyaluronic acid (HA). At first, dispersions of AgNPs decorated with chitosan (CS) or aminocellulose (AC) were synthesized by applying high intensity ultrasound. These polycationic nanoentities were layer-by-layer assembled with the HA polyanion to generate stable 3D supramolecular constructs, where the biopolymer-capped AgNPs play the dual role of active agent and structural element. SEM images of the assemblies revealed gradual increase of thickness with the number of deposited bilayers. The composites of ≥50 bilayers were safe to human cells and demonstrated 100% antibacterial activity against Staphylococcus aureus and Escherichia coli. Moreover, the films containing CSAgNPs brought about the total prevention of biofilm formation reducing the cells surface adherence by up to 6 logs. Such nanobiocomposites could serve as an effective barrier to control bacterial growth on injured skin, burns, and chronic wounds.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Nanocompostos / Antibacterianos Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Nanocompostos / Antibacterianos Idioma: En Ano de publicação: 2018 Tipo de documento: Article