Silk fibroin/hyaluronic acid blend sponge accelerates the wound healing in full-thickness skin injury model of rat
2006
Kang, S.Y. (Seoul National University, Seoul, Republic of Korea) | Roh, D.H. (Seoul National University, Seoul, Republic of Korea) | Kim, H.W. (Seoul National University, Seoul, Republic of Korea) | Yoon, S.Y. (Seoul National University, Seoul, Republic of Korea) | Kwon, Y.B. (Chonbuk National University Medical School, Jeonju, Republic of Korea) | Kweon, H.Y. (National Institute of Agricultural Science and Technology, RDA, Suwon, Republic of Korea) | Lee, K.G. (National Institute of Agricultural Science and Technology, RDA, Suwon, Republic of Korea) | Park, Y.H. (Seoul National University, Seoul, Republic of Korea) | Lee, J.H. (Seoul National University, Seoul, Republic of Korea), E-mail: JHL1101@snu.ac.kr
The primary goal of the would healing is rapid wound closure. Recent advances in cellular and molecular biology have greatly expanded our understanding of the biologic processes involved in wound repair and tissue regeneration. This study was conducted to develop a new sponge type of biomaterial to be used for either wound dressing or scaffold for tissue engineering. We designed to make a comparative study of the wound healing effect of silk fibroin/hyaluronic acid (SF/HA) blend sponge in full-thickness dermal injury model of rat.
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