2020
DOI: 10.3390/polym12030548
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Development and Characterization of Hemicellulose-Based Films for Antibacterial Wound-Dressing Application

Abstract: Hemicelluloses are biopolymers with versatile properties for biomedical applications. Herein, hemicellulose (arabinoxylan)-based antibacterial film dressings were prepared and characterized. Arabinoxylan was isolated from psyllium husk. Blank and gentamicin-loaded films were prepared by the solvent cast method using glycerol as the plasticizer. The appropriate composition of the films was obtained by varying the amounts of arabinoxylan, glycerol, and gentamicin. The films were found to be transparent, smooth, … Show more

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Cited by 40 publications
(69 citation statements)
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“…The GM particles were homogeneously dispersed throughout the films, without a sign of clumping of particles to form large agglomerates or sedimentation, which further validated proper mixing of the film components. The results of SEM analysis of the films are in close agreement with a previous study where drug particles were uniformly distributed within AX films [14].…”
Section: Scanning Electron Microscopysupporting
confidence: 90%
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“…The GM particles were homogeneously dispersed throughout the films, without a sign of clumping of particles to form large agglomerates or sedimentation, which further validated proper mixing of the film components. The results of SEM analysis of the films are in close agreement with a previous study where drug particles were uniformly distributed within AX films [14].…”
Section: Scanning Electron Microscopysupporting
confidence: 90%
“…Since all the other factors were similar for all AX-GL films, the increase in the thickness of AXGL5 and AXGL5D can be attributed to the presence of more solids in the films. The thickness of the AX-GL films was higher than that of the previously reported AX films due to the addition of GL to the formulation of AX-GL films [14].…”
Section: Water Loss and Thickness Of Ax-gl Filmscontrasting
confidence: 65%
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“…Any breach in the skin by wound causes invasion of microorganisms into the sensitive underneath tissues that lead to wound infection. The advanced research on wound dressing development suggests that the ideal wound dressing should provide a wet environment to the wound, absorb exudates from the wound, should be highly biocompatible, having good antimicrobial activity for quick tissue regeneration and mechanical features to remain intact [ 3 , 4 , 5 , 6 , 7 ].…”
Section: Introductionmentioning
confidence: 99%