Wound-healing effects of human dermal components with gelatin dressing
- Authors
- Jang, Hyun-Jun; Kim, Yu-mi; Yoo, Bo-Young; Seo, Young-Kwon
- Issue Date
- Jan-2018
- Publisher
- SAGE PUBLICATIONS LTD
- Keywords
- Dermis powder; gelatin; paste dressing; skin regeneration; wound healing
- Citation
- JOURNAL OF BIOMATERIALS APPLICATIONS, v.32, no.6, pp 716 - 724
- Pages
- 9
- Indexed
- SCIE
SCOPUS
- Journal Title
- JOURNAL OF BIOMATERIALS APPLICATIONS
- Volume
- 32
- Number
- 6
- Start Page
- 716
- End Page
- 724
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/9847
- DOI
- 10.1177/0885328217741758
- ISSN
- 0885-3282
1530-8022
- Abstract
- There have been numerous investigations regarding various types of dressings and artificial dermis of solid form, yet limited research and development on paste types, such as hydrogels with dermal powder, have ensued. In this study, we compared the invivo wound healing effects of gelatin paste containing dermal powder to a collagen type I/chondroitin 6-sulfate (coll/chondroitin) sponge and gelatin alone, after 48 days post grafting, in a skin wound rat model. In the dermis powder/gelatin paste-treated group, wound area contraction was minimized 50%, while in the gelatin and coll/chondroitin sponge groups, the initial area contracted 83-85% and 79-85%, respectively. Histological analysis revealed the wounds treated with dermal powder/gelatin were associated with many fibroblasts, which infiltrated the wound bed, as well as thick collagen bundles that were arranged in dendritic arrays, resembling normal skin. Furthermore, in contrast to the gelatin- and coll/chondroitin sponge-treated groups, the powder/gelatin paste-treated wounds exhibited an abundance of elastic fibers (Victoria blue staining) and extensive formation of blood vessels around the dermis (CD31 staining). Therefore, the dermis powder/gelatin paste not only renders convenience to users but also has prominent wound-healing effects on full-thickness wounds.
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Collections - College of Life Science and Biotechnology > Department of Biomedical Engineering > 1. Journal Articles

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