Authors
Gisela Solange Alvarez, Christophe Hélary, Andrea Mathilde Mebert, Xiaolin Wang, Thibaud Coradin, Martin Federico Desimone
Publication date
2014
Journal
Journal of Materials Chemistry B
Volume
2
Issue
29
Pages
4660-4670
Publisher
Royal Society of Chemistry
Description
Silica–collagen type I nanocomposite hydrogels are evaluated as medicated dressings to prevent infection in chronic wounds. Two antibiotics, gentamicin and rifamycin, are encapsulated in a single step within plain silica nanoparticles. Their antimicrobial efficiency against Pseudomonas aeruginosa and Staphylococcus aureus is assessed. Gentamycin-loaded 500 nm particles can be immobilized at high silica dose in concentrated collagen hydrogels without modifying their fibrillar structure or impacting on their rheological behavior and increases their proteolytic stability. Gentamicin release from the nanocomposites is sustained over 7 days, offering an unparalleled prolonged antibacterial activity. Particle immobilization also decreases their cytotoxicity towards surface-seeded fibroblast cells. Rifamycin-loaded 100 nm particles significantly alter the collagen hydrogel structure at high silica doses. The thus-obtained …
Total citations
20142015201620172018201920202021202220232024216131314212025282210