№ files_lp_4_process_3_132564
Electrospun GelMA hydrogel fibrous scaffolds demonstrate rapid in vivo vascularization and improved survival of local random skin flaps in preclinical rat models, representing a primary research source in tissue engineering.
Year: 2016
Region / City: Shanghai, China; Shenzhen, China; Suzhou, China; Helsinki, Finland; Turku, Finland
Subject: Tissue engineering, vascularization, skin flap regeneration
Document Type: Peer-reviewed research article
Institution / Organization: Shanghai Ninth People’s Hospital, Xi’an Jiaotong University, Shenzhen Institutes of Advanced Technology, University of Helsinki, Soochow University, Åbo Akademi University
Authors: Xiaoming Sun, Qi Lang, Hongbo Zhang, Liying Cheng, Ying Zhang, Guoqing Pan, Xin Zhao, Huilin Yang, Yuguang Zhang, Hélder A. Santos, Wenguo Cui
Target Audience: Researchers in biomedical engineering and regenerative medicine
Methodology: Electrospinning of photocrosslinkable gelatin methacryloyl (GelMA) hydrogels
Key Findings: Enhanced endothelial cell adhesion, proliferation, migration, tubulogenesis, and increased skin flap survival in rat models
Publication DOI: 10.1002/adfm.201604617
Access: Non-commercial use under Wiley Terms and Conditions
Price: 8 / 10 USD
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