Engineered skin equivalent or scaffold for skin regeneration in burn and wound management. Provides structure for epidermal and dermal tissue reconstruction. Indicated for significant skin defects and thermal injuries.
Manufactured by
Jiangxi Borayer Biotechnology Co., Ltd
China
Borayer Biotechnology is a high-tech enterprise founded by a Tsinghua University team, focusing on biomedical materials R&D. The company has established multiple leading polymer biomaterial technology platforms including starch derivatives, biological polysaccharides, protein extracts, polyurethane compounds, and PEG derivatives. Products include rapid hemostasis materials, wound repair products, and guided tissue regeneration materials. The company holds over 60 patent applications, 7 medical device registration certificates, and has completed B+ round financing exceeding $100 million valuation.
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CollaWind Co., Ltd.
Japan · 1 relevant product
ITA medical GmbH & Co. KG
Germany · 2 relevant products
PLCOSKIN CO.,LTD.
Türkiye · 3 relevant products
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3 of 46 closest product alternatives
CollaWind Co., Ltd. · Japan
A biocompatible collagen sheet derived from fish scales featuring a 3D wave structure and micropattern surface that mimics human gum and skin tissue topology. It is designed for clinical use in oral wound healing and for research applications in oral mucosal and skin regenerative medicine, drug evaluation, and toxicity testing.
ITA medical GmbH & Co. KG · Germany
Three-dimensional textile scaffolds designed to support dermal and epidermal regeneration. These biocompatible structures provide appropriate porosity and surface chemistry for keratinocyte and fibroblast proliferation.
PLCOSKIN CO.,LTD. · Türkiye
A hybrid mesh medical device combining collagen sheet and polycaprolactone (PCL) mesh manufactured using 3D printing technology. It is used for reinforcement and reconstruction of damaged soft tissues such as muscle and abdominal wall. The device is biodegradable, naturally dissolves in the body over approximately 6 months, and regenerates as tissue while reducing adhesion problems. It addresses issues associated with cadaver-derived dermal grafts including high cost, inflammatory response, and supply imbalance.
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