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Degradable and Tunable Keratin-fibrinogen Hydrogel as Controlled Release System for Skin Tissue Regeneration

摘要Biodegradable hydrogels are promising biomaterials for use in controlled-release systems for skin tissue regeneration.Con-trolled delivery systems constitute an important aspect of tissue engineering because they can modulate various physiological responses,including early immune response,tissue remodeling,and cell proliferation and maturation in the wound-healing process.Hydrogels composed of various biomaterials have been developed to overcome the limitations of conventional drug-or protein-delivery systems,such as limited targeting ability,low stability,and the induction of drug resistance.Hydrogels based on keratin,a natural polymer extracted from human hair,can provide adequate cell support and control homeostasis.Consequently,they can be applied for skin tissue engineering.In this study,we prepared degradable,tunable,and biocom-patible hydrogels for controllable protein delivery.We synthesized keratin-fibrinogen(KER-FBG)by the chemical coupling reaction and prepared hydrogels through polymerization with thrombin.The structures and morphologies of the KER-FBG hydrogels were confirmed.Furthermore,the mechanical properties,swelling ratio,degradation,release behavior,and bio-compatibility were investigated.The KER-FBG hydrogels presented promising biological performance,indicating that the material is suitable as a controlled protein delivery carrier.

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作者 Sung Jun Min [1] Jae Seo Lee [1] Haram Nah [2] Ho-Jin Moon [3] Sang Jin Lee [3] Hyeon Jeong Kang [4] Yu-Shik Hwang [4] Il Keun Kwon [5] Dong Nyoung Heo [6] 学术成果认领
作者单位 Department of Dentistry,Graduate School,Kyung Hee University,26 Kyungheedae-Ro,Dongdaemun-Gu,Seoul 02447,Republic of Korea [1] Department of Dentistry,Graduate School,Kyung Hee University,26 Kyungheedae-Ro,Dongdaemun-Gu,Seoul 02447,Republic of Korea;Biofriends Inc,26 Kyungheedae-Ro,Dongdaemun-Gu,Seoul 02447,Republic of Korea [2] Department of Dental Materials,School of Dentistry,Kyung Hee University,26 Kyungheedae-Ro,Dongdaemun-Gu,Seoul 02447,Republic of Korea [3] Department of Maxillofacial Biomedical Engineering and Institute of Oral Biology,School of Dentistry,Kyung Hee University,Seoul 02447,Korea [4] Department of Dental Materials,School of Dentistry,Kyung Hee University,26 Kyungheedae-Ro,Dongdaemun-Gu,Seoul 02447,Republic of Korea;Kyung Hee University Medical Science Research Institute,Kyung Hee University,23 Kyungheedae-Ro,Dongdaemun-Gu,Seoul 02447,Republic of Korea [5] Biofriends Inc,26 Kyungheedae-Ro,Dongdaemun-Gu,Seoul 02447,Republic of Korea;Department of Dental Materials,School of Dentistry,Kyung Hee University,26 Kyungheedae-Ro,Dongdaemun-Gu,Seoul 02447,Republic of Korea [6]
栏目名称 RESEARCH ARTICLES
发布时间 2023-07-11
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仿生工程学报(英文版)

仿生工程学报(英文版)

2023年20卷3期

1049-1059页

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