(2023) Antibacterial self-healing bilayer dressing for epidermal sensors and accelerate wound repair. Carbohydrate Polymers. p. 14. ISSN 0144-8617
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Abstract
This study aimed to investigate the effect of the bilayer hydrogel as a wound dressing on the wound-healing rate. We synthesized a self-healing hydrogel with optimized formulation by introducing natural polymer (chitosan) and arginine to the hydrogel composition. We then characterized the hydrogels using FT-IR, thermal analysis, mechanical testing, and in vitro and in vivo assay. The resulting bilayer wound dressing offers a lot of desirable characteristics, including good self-healing and repeatable adhesiveness. Likewise, the conductive bilayer wound dressing could be used to analyze the patient's healthcare data in real-time as epidermal sensors. Bilayer wound dressings remarkably have broad antibacterial efficacy against Gram-positive and Gram-negative bacteria. The potential applications of this bilayer wound dressing are illustrated by detectable body movement and conductivity. The wound-healing rate of bilayer wound dressings containing chitosan and arginine was higher, but those without the aforementioned ingredients had lower wound-healing efficacy. Additionally, promoting collagen synthesis and reducing wound infection has a considerable therapeutic impact on wounds. These results could have significant implications for the development of high-performance wound dressings.
Item Type: | Article |
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Keywords: | Chitosan Self -healing Bilayer Conductive Adhesive Wound healing conductive hydrogel chitosan membranes arginine composite Chemistry Polymer Science |
Page Range: | p. 14 |
Journal or Publication Title: | Carbohydrate Polymers |
Journal Index: | ISI |
Volume: | 319 |
Identification Number: | https://doi.org/10.1016/j.carbpol.2023.121171 |
ISSN: | 0144-8617 |
Depositing User: | خانم ناهید ضیائی |
URI: | http://eprints.mui.ac.ir/id/eprint/26164 |
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