Chitosan Membranes Containing Plant Extracts: Preparation, Characterization and Antimicrobial Properties
Luiza Mădălina Grădinaru, Mihaela Barbălată-Mândru, Alin Enache, C. Rîmbu, Georgiana Ileana Badea, Magdalena Aflori
International Journal of Molecular Sciences
Abstract
The main strategy of this study was to combine the traditional perspective of using medicinal extracts with polymeric scaffolds manufactured by an engineering approach to fabricate a potential dressing product with antimicrobial properties. Thus, chitosan-based membranes containing <i>S. officinalis</i> and <i>H. perforatum</i> extracts were developed and their suitability as novel dressing materials was investigated. The morphology of the chitosan-based films was assessed by scanning electron microscopy (SEM) and the chemical structure characterization was performed via Fourier transform infrared spectroscopy (FTIR). The addition of the plant extracts increased the sorption capacity of the studied fluids, mainly at the membrane with <i>S. officinalis</i> extract. The membranes with 4% chitosan embedded with both plant extracts maintained their integrity after being immersed for 14 days in incubation media, especially in PBS. The antibacterial activities were determined by the modified Kirby-Bauer disk diffusion method for Gram-positive (<i>S. aureus</i> ATCC 25923, <i>MRSA</i> ATCC 43300) and Gram-negative (<i>E. coli</i> ATCC 25922, <i>P. aeruginosa</i> ATCC 27853) microorganisms. The antibacterial property was enhanced by incorporating the plant extracts into chitosan films. The outcome of the study reveals that the obtained chitosan-based membranes are promising candidates to be used as a wound dressing due to their good physico-chemical and antimicrobial properties.
Extracted Claims
2 claims extracted from this paper into the knowledge graph
chitosan-based membranes increase sorption capacity
“The addition of the plant extracts increased the sorption capacity of the studied fluids, mainly at the membrane with S. officinalis extract.”
chitosan-based membranes enhance antibacterial property
“The antibacterial property was enhanced by incorporating the plant extracts into chitosan films.”