RRC ID 61821
著者 Beşkardeş IG, Demirtaş TT, Durukan MD, Gümüşderelioğlu M.
タイトル Microwave-assisted fabrication of chitosan-hydroxyapatite superporous hydrogel composites as bone scaffolds.
ジャーナル J Tissue Eng Regen Med
Abstract In this study, a novel scaffold fabrication method was developed by combining microwave irradiation and gas foaming. Chitosan superporous hydrogels (SPHs) and chitosan-hydroxyapatite (HA) superporous hydrogel composites (SPHCs) were prepared by using this method in the presence of crosslinking agent, glyoxal, and a gas-blowing agent, NaHCO3. In order to examine the effect of HA on composite structure and cellular behaviour, two types of HA particles, i.e. spherical beads in 45-80 µm diameter and powder form, were used. While rapid heating with microwave irradiation enhances gas blowing, pH increment, which is accelerated by NaHCO3 decomposition, provides better crosslinking. Thus, interconnected and well-established macroporous hydrogels/hydrogel composites were produced easily and rapidly (~1 min). Cell culture studies, which were carried out under static and dynamic conditions with MC3T3-E1 pre-osteoblastic cells, indicated that chitosan-HA bead SPHCs supported cellular proliferation and osteoblastic differentiation better than chitosan SPHs and chitosan-HA powder SPHCs. In conclusion, simultaneous gas foaming and microwave crosslinking can be evaluated for the preparation of composite scaffolds which have superior properties for bone tissue engineering.
巻・号 9(11)
ページ 1233-46
公開日 2015-11-1
DOI 10.1002/term.1677
PMID 23239627
MeSH 3T3 Cells Alkaline Phosphatase / chemistry Animals Bone and Bones / pathology Chitosan / chemistry* Cross-Linking Reagents / chemistry Durapatite / chemistry* Glyoxal / chemistry Hot Temperature Hydrogels / chemistry Mice Microscopy, Electron, Scanning Microwaves Osteoblasts / metabolism Spectroscopy, Fourier Transform Infrared Stress, Mechanical Thermogravimetry Tissue Engineering / methods Tissue Scaffolds / chemistry*
IF 3.078
リソース情報
ヒト・動物細胞 MC3T3-E1(RCB1126)