Mechanically Reinforced Gelatin Hydrogels by Introducing Slidable Supramolecular Cross-Linkers.

chemical cross-linking gelatin hysteresis loss polyrotaxane stretchability

Journal

Polymers
ISSN: 2073-4360
Titre abrégé: Polymers (Basel)
Pays: Switzerland
ID NLM: 101545357

Informations de publication

Date de publication:
01 Nov 2019
Historique:
received: 07 10 2019
revised: 26 10 2019
accepted: 29 10 2019
entrez: 6 11 2019
pubmed: 7 11 2019
medline: 7 11 2019
Statut: epublish

Résumé

Tough mechanical properties are generally required for tissue substitutes used in regeneration of damaged tissue, as these substitutes must be able to withstand the external physical force caused by stretching. Gelatin, a biopolymer derived from collagen, is a biocompatible and cell adhesive material, and is thus widely utilized as a component of biomaterials. However, the application of gelatin hydrogels as a tissue substitute is limited owing to their insufficient mechanical properties. Chemical cross-linking is a promising method to improve the mechanical properties of hydrogels. We examined the potential of the chemical cross-linking of gelatin hydrogels with carboxy-group-modified polyrotaxanes (PRXs), a supramolecular polymer comprising a poly(ethylene glycol) chain threaded into the cavity of α-cyclodextrins (α-CDs), to improve mechanical properties such as stretchability and toughness. Cross-linking gelatin hydrogels with threading α-CDs in PRXs could allow for freely mobile cross-linking points to potentially improve the mechanical properties. Indeed, the stretchability and toughness of gelatin hydrogels cross-linked with PRXs were slightly higher than those of the hydrogels with the conventional chemical cross-linkers 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide (EDC)/

Identifiants

pubmed: 31683825
pii: polym11111787
doi: 10.3390/polym11111787
pmc: PMC6918157
pii:
doi:

Types de publication

Journal Article

Langues

eng

Subventions

Organisme : Japan Society for the Promotion of Science
ID : JP16H01852
Organisme : Japan Society for the Promotion of Science
ID : JP18J14112
Organisme : Ogasawara Foundation for the Promotion of Science and Engineering
ID : NA
Organisme : Ministry of Education, Culture, Sports, Science and Technology
ID : cooperative project among medicine, dentistry, and engineering for medical innovation
Organisme : Ministry of Education, Culture, Sports, Science and Technology
ID : interdisciplinary and international project for the development of advanced life innovative materials and human resources

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Auteurs

Dae Hoon Lee (DH)

Department of Organic Biomaterials, Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University (TMDU), 2-3-10 Kanda-Surugadai, Chiyoda, Tokyo 101-0062, Japan. lee.org@tmd.ac.jp.

Atsushi Tamura (A)

Department of Organic Biomaterials, Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University (TMDU), 2-3-10 Kanda-Surugadai, Chiyoda, Tokyo 101-0062, Japan. tamura.org@tmd.ac.jp.

Yoshinori Arisaka (Y)

Department of Organic Biomaterials, Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University (TMDU), 2-3-10 Kanda-Surugadai, Chiyoda, Tokyo 101-0062, Japan. arisaka.org@tmd.ac.jp.

Ji-Hun Seo (JH)

Department of Materials Science and Engineering, School of Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Korea. seojh79@korea.ac.kr.

Nobuhiko Yui (N)

Department of Organic Biomaterials, Institute of Biomaterials and Bioengineering, Tokyo Medical and Dental University (TMDU), 2-3-10 Kanda-Surugadai, Chiyoda, Tokyo 101-0062, Japan. yui.org@tmd.ac.jp.

Classifications MeSH