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Development of anti-adhesive spongy sheet composed of hyaluronic acid and collagen containing epidermal growth factor

Authors :
Yoshimitsu Kuroyanagi
Akira Takeda
Misato Kuroyanagi
Nahoko Shimizu
Ayako Toi
Akiko Yamamoto
Tomonori Inomata
Source :
Journal of biomaterials science. Polymer edition. 25(12)
Publication Year :
2014

Abstract

Anti-adhesive products need to be designed while considering the concept of wound healing. Two main events must proceed simultaneously: facilitating wound healing in surgically excised tissue, as well as preventing injured tissue from adhering to the surrounding tissue. The present study aimed to develop an anti-adhesive spongy sheet composed of hyaluronic acid and collagen (Col) containing epidermal growth factor, and to investigate the potential of this spongy sheet using an in vitro wound surface model (placing a spongy sheet on a fibroblast-incorporating Col gel sheet) and an in vitro inter-tissue model (placing a spongy sheet between two fibroblast-incorporating Col gel sheets). These in vitro experiments demonstrated that this spongy sheet effectively stimulates fibroblasts to release an increased amount of vascular endothelial growth factor and hepatocyte growth factor, which are essential for wound healing to proceed succesfully. In addition, anti-adhesive performance of this spongy sheet was evaluated in animal experiments using Sprague Dawley rats. Under anesthesia, a 1 cm × 2 cm segment of peritoneum was superficially excised from walls, and the cecum was then abraded by scraping with a scalpel blade over a 1 cm × 2 cm area. A piece of spongy sheet was placed on the peritoneal defect. Both defects were placed in contact, and the incision was closed by suturing. Peritoneal condition was evaluated after one week. This spongy sheet was capable of facilitating the wound healing of surgically excised tissue and preventing surgically excised tissue from adhering to surrounding tissues.

Details

ISSN :
15685624
Volume :
25
Issue :
12
Database :
OpenAIRE
Journal :
Journal of biomaterials science. Polymer edition
Accession number :
edsair.doi.dedup.....972178c8fa865d6f844ba8b992de4356