Silver-doped calcium silicate sol-gel glasses with a cotton-wool-like structure for wound healing
File(s)Text_AkikoObata MSE-C accepted.pdf (2.33 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Skin has excellent capacity to regenerate, however, in the event of a large injury or burn skin grafts are required to aid wound healing. The regenerative capacity further declines with increasing age and can be further exacerbated with bacterial infection leading to a chronic wound. Engineered skin substitutes can be used to provide a temporary template for the damaged tissue, to prevent/combat bacterial infection and promote healing. In this study, the sol-gel process and electrospinning were combined to fabricate 3D cotton-wool-like sol-gel bioactive glass fibers that mimic the fibrous architecture of skin extracellular matrix (ECM) and deliver metal ions for antibacterial (silver) and therapeutic (calcium and silica species) actions for successful healing of wounds. This study investigated the effects of synthesis and process parameters, in particular sintering temperature on the fiber morphology, the incorporation and distribution of silver and the degradation rate of fibers. Silver nitrate was found to decompose into silver nanoparticles within the glass fibers upon calcination. Furthermore, with increasing calcination temperature the nanoparticles increased in size from 3 nm at 600 °C to ~25 nm at 800 °C. The antibacterial ability of the Ag-doped glass fibers decreased as a function of the glass calcination temperature. The degradation products from the Ag-doped 3D non-woven sol-gel glass fibers were also found to promote fibroblast proliferation thus demonstrating their potential for use in skin regeneration.
Date Issued
2021-11
Date Acceptance
2021-11-01
Citation
Materials Science and Engineering: C, 2021, 134, pp.112561-112561
ISSN
0928-4931
Publisher
Elsevier BV
Start Page
112561
End Page
112561
Journal / Book Title
Materials Science and Engineering: C
Volume
134
Copyright Statement
© 2021 Elsevier B.V. All rights reserved.
Identifier
https://www.sciencedirect.com/science/article/abs/pii/S0928493121007013
Subjects
Antibacterial property
Bioactive glass
Cotton-wool-like structure
Electrospinning
Wound healing
Biomedical Engineering
0903 Biomedical Engineering
0912 Materials Engineering
Publication Status
Published
Article Number
112561
Date Publish Online
2021-11-24