High performance gelatin-based biocompatible hybrid hydrogels are developed using functionalized polyethylene glycol as a cross-linker in presence of chitosan or hydroxyethyl cellulose. Tensile test shows robust and tunable mechanical properties and reveals non-linear and J-shaped stress-strain curves similar to those found for native extracellular matrix. Degradation study demonstrates that the mass loss and change in mechanical properties are dependent on hydrogel composition and cross-linking density. Structural features of the hydrogels are confirmed by infrared spectroscopy. A preliminary biological evaluation is carried out using rat myoblasts and human fibroblasts cell lines. The results show that all hydrogels allow cell adhesion and proliferation during four days culture, hence, they might have a great potential for use in the biomedical applications.

Preparation and properties of high performance gelatin-based hydrogels with chitosan or hydroxyethyl cellulose for tissue engineering applications

Agnelli S.;Ginestra P.;Dell'Era P.;Sartore L.
2019-01-01

Abstract

High performance gelatin-based biocompatible hybrid hydrogels are developed using functionalized polyethylene glycol as a cross-linker in presence of chitosan or hydroxyethyl cellulose. Tensile test shows robust and tunable mechanical properties and reveals non-linear and J-shaped stress-strain curves similar to those found for native extracellular matrix. Degradation study demonstrates that the mass loss and change in mechanical properties are dependent on hydrogel composition and cross-linking density. Structural features of the hydrogels are confirmed by infrared spectroscopy. A preliminary biological evaluation is carried out using rat myoblasts and human fibroblasts cell lines. The results show that all hydrogels allow cell adhesion and proliferation during four days culture, hence, they might have a great potential for use in the biomedical applications.
2019
Ateneo di appartenenza
PE5_6 New materials: oxides, alloys, composite, organic-inorganic hybrid, nanoparticles
PE8_9 Materials engineering (biomaterials, metals, ceramics, polymers, composites,…)
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
68
4
183
192
10
Biodegradable; chitosan; gelatin; high performance hybrid hydrogel; J-shaped stress-strain curves; post-curing; tissue engineering;
www.tandf.co.uk/journals/titles/00914037.asp
7
info:eu-repo/semantics/article
262
Dey, K.; Agnelli, S.; Serzanti, M.; Ginestra, P.; Scari, G.; Dell'Era, P.; Sartore, L.
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/501845
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