Searching for just a few words should be enough to get started. If you need to make more complex queries, use the tips below to guide you.
Article type: Research Article
Authors: Chang, Yilia; b | Zhang, Fubaob; c; | Liu, Fengd | Shi, Lianshuie | Zhang, Line | Zhu, Hongshuie
Affiliations: [a] Department of Ophthalmology, Affiliated Eye Hospital of Nanchang University, China | [b] The Graduate School of Nanchang University, China | [c] Department of Stomatology, The Third Affiliated Hospital of Nanchang University, China | [d] College of Chemistry, Nanchang University, China | [e] Department of Prosthodontics, Affiliated Stomatological Hospital of Nanchang University, China
Correspondence: [*] Corresponding author: Fubao Zhang, Department of Stomatology, The Third Affiliated Hospital of Nanchang University, 128 Xiangshan North Road, Nanchang, Jiangxi Province, China. Tel.: +86 15679107727; Fax: +86 079188862303; E-mail: ndsfy001874@ncu.edu.cn
Abstract: BACKGROUND:Craniofacial soft-tissue defects mostly have an impact on the treatment of various oral diseases. Tissue expander is an important technique for tissue reconstruction, especially for soft tissues in reconstructive surgery. OBJECTIVE:This research aimed to develop a new self-swelling tissue expander, namely hydrogel, for soft tissue reconstruction in craniofacial region. METHODS:In vitro, the chemical and physical characteristics of hydrogel were evaluated by SEM, swelling rate, mechanical testing, EDS, and FT-IR. In vivo, the craniofacial implant model of SD rats were divided into group A as control, group B with hydrogels for 1 week expansion, group C for 2 weeks and group D for 4 weeks (n = 5), and the effects were analyzed by HE staining, histological and radiographic evaluation. RESULTS:The in vitro results suggested that dry hydrogel possessed a uniform surface with micropores, the surface of post-swelling hydrogel formed three-dimensional meshwork. Within 24 hours, hydrogels expanded markedly, then slowed down. The mechanical property of hydrogels with longer expansion was better, whose main elements were carbon and oxygen. FT-IR also verified its molecular structure. In vivo, the wounds of rats recovered well, hydrogels could be removed as one whole piece with original shape and examined by radiographic evaluation, besides, the expanded skin and developed fibrous capsule formed surrounding hydrogels. CONCLUSION:The new expander was designed successfully with good chemical and physical characteristics, and could be applied in an animal model to help tissue reconstruction.
Keywords: Tissue expander, biomaterials, rat, tissue reconstruction
DOI: 10.3233/BME-211224
Journal: Bio-Medical Materials and Engineering, vol. 33, no. 1, pp. 77-90, 2022
IOS Press, Inc.
6751 Tepper Drive
Clifton, VA 20124
USA
Tel: +1 703 830 6300
Fax: +1 703 830 2300
sales@iospress.com
For editorial issues, like the status of your submitted paper or proposals, write to editorial@iospress.nl
IOS Press
Nieuwe Hemweg 6B
1013 BG Amsterdam
The Netherlands
Tel: +31 20 688 3355
Fax: +31 20 687 0091
info@iospress.nl
For editorial issues, permissions, book requests, submissions and proceedings, contact the Amsterdam office info@iospress.nl
Inspirees International (China Office)
Ciyunsi Beili 207(CapitaLand), Bld 1, 7-901
100025, Beijing
China
Free service line: 400 661 8717
Fax: +86 10 8446 7947
china@iospress.cn
For editorial issues, like the status of your submitted paper or proposals, write to editorial@iospress.nl
如果您在出版方面需要帮助或有任何建, 件至: editorial@iospress.nl